{"type": "FeatureCollection", "features": [{"id": "10.1016/bs.aecr.2019.06.001", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:15:36Z", "type": "Report", "created": "2019-07-23", "title": "A multitrophic perspective on biodiversity\u2013ecosystem functioning research", "description": "Concern about the functional consequences of unprecedented loss in biodiversity has prompted biodiversity-ecosystem functioning (BEF) research to become one of the most active fields of ecological research in the past 25 years. Hundreds of experiments have manipulated biodiversity as an independent variable and found compelling support that the functioning of ecosystems increases with the diversity of their ecological communities. This research has also identified some of the mechanisms underlying BEF relationships, some context-dependencies of the strength of relationships, as well as implications for various ecosystem services that mankind depends upon. In this paper, we argue that a multitrophic perspective of biotic interactions in random and non-random biodiversity change scenarios is key to advance future BEF research and to address some of its most important remaining challenges. We discuss that the study and the quantification of multitrophic interactions in space and time facilitates scaling up from small-scale biodiversity manipulations and ecosystem function assessments to management-relevant spatial scales across ecosystem boundaries. We specifically consider multitrophic conceptual frameworks to understand and predict the context-dependency of BEF relationships. Moreover, we highlight the importance of the eco-evolutionary underpinnings of multitrophic BEF relationships. We outline that FAIR data (meeting the standards of findability, accessibility, interoperability, and reusability) and reproducible processing will be key to advance this field of research by making it more integrative. Finally, we show how these BEF insights may be implemented for ecosystem management, society, and policy. Given that human well-being critically depends on the multiple services provided by diverse, multitrophic communities, integrating the approaches of evolutionary ecology, community ecology, and ecosystem ecology in future BEF research will be key to refine conservation targets and develop sustainable management strategies.", "keywords": ["580", "Biodiversity change", "0301 basic medicine", "570", "0303 health sciences", "Geography & travel", "577", "Food web", "Spatial scaling", "910", "15. Life on land", "ddc:910", "Ecosystem functions", "Management", "[SDE.BE] Environmental Sciences/Biodiversity and Ecology", "03 medical and health sciences", "Eco-evolution", "13. Climate action", "11. Sustainability", "Multifunctionality", "Landscape", "info:eu-repo/classification/ddc/910", "[SDE.BE]Environmental Sciences/Biodiversity and Ecology", "Real-world biodiversity change"]}, "links": [{"href": "https://doi.org/10.1016/bs.aecr.2019.06.001"}, {"rel": "self", "type": "application/geo+json", "title": "10.1016/bs.aecr.2019.06.001", "name": "item", "description": "10.1016/bs.aecr.2019.06.001", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1016/bs.aecr.2019.06.001"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2019-01-01T00:00:00Z"}}, {"id": "10.1029/2022je007190", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:18:14Z", "type": "Journal Article", "created": "2022-01-25", "title": "InSight Pressure Data Recalibration, and Its Application to the Study of Long-Term Pressure Changes on Mars", "description": "Abstract<p>Observations of the South Polar Residual Cap suggest a possible erosion of the cap, leading to an increase of the global mass of the atmosphere. We test this assumption by making the first comparison between Viking 1 and InSight surface pressure data, which were recorded 40\uffc2\uffa0years apart. Such a comparison also allows us to determine changes in the dynamics of the seasonal ice caps between these two periods. To do so, we first had to recalibrate the InSight pressure data because of their unexpected sensitivity to the sensor temperature. Then, we had to design a procedure to compare distant pressure measurements. We propose two surface pressure interpolation methods at the local and global scale to do the comparison. The comparison of Viking and InSight seasonal surface pressure variations does not show changes larger than \uffc2\uffb18\uffc2\uffa0Pa in the CO2 cycle. Such conclusions are supported by an analysis of Mars Science Laboratory (MSL) pressure data. Further comparisons with images of the south seasonal cap taken by the Viking 2 orbiter and MARCI camera do not display significant changes in the dynamics of this cap over a 40\uffc2\uffa0year period. Only a possible larger extension of the North Cap after the global storm of MY 34 is observed, but the physical mechanisms behind this anomaly are not well determined. Finally, the first comparison of MSL and InSight pressure data suggests a pressure deficit at Gale crater during southern summer, possibly resulting from a large presence of dust suspended within the crater.</p>", "keywords": ["Atmospheric sciences", "550", "Astronomy", "Atmosphere (unit)", "FOS: Mechanical engineering", "Library science", "Oceanography", "01 natural sciences", "CO<SUB>2</SUB> ice", "pressure", "Mars Exploration Program", "Engineering", "Surface pressure", "Storm", "Martian Climate", "Space Suit Design and Ergonomics for EVA", "Martian Atmosphere", "Earth and Planetary Astrophysics (astro-ph.EP)", "Climatology", "Global and Planetary Change", "Geography", "Martian Surface", "Physics", "Geology", "Impact crater", "Condensed matter physics", "Anomaly (physics)", "World Wide Web", "Algorithm", "Satellite Observations", "Residual", "Physical Sciences", "Exploration and Study of Mars", "Astrophysics - Instrumentation and Methods for Astrophysics", "Research Article", "FOS: Physical sciences", "Mars", "Aerospace Engineering", "Pressure gradient", "Environmental science", "[SDU] Sciences of the Universe [physics]", "atmospheric mass", "Meteorology", "Orbiter", "0103 physical sciences", "Instrumentation and Methods for Astrophysics (astro-ph.IM)", "Formation and Evolution of the Solar System", "0105 earth and related environmental sciences", "Pressure system", "CO 2 ice", "Astronomy and Astrophysics", "FOS: Earth and related environmental sciences", "Astrobiology", "Computer science", "Physics and Astronomy", "[SDU]Sciences of the Universe [physics]", "13. Climate action", "Global Methane Emissions and Impacts", "Environmental Science", "cap sublimation", "Water on Mars", "Astrophysics - Earth and Planetary Astrophysics"]}, "links": [{"href": "https://agupubs.onlinelibrary.wiley.com/doi/pdf/10.1029/2022JE007190"}, {"href": "https://doi.org/10.1029/2022je007190"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Journal%20of%20Geophysical%20Research%3A%20Planets", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1029/2022je007190", "name": "item", "description": "10.1029/2022je007190", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1029/2022je007190"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2022-01-25T00:00:00Z"}}, {"id": "10.1080/02571862.2005.10634705", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:18:54Z", "type": "Journal Article", "created": "2013-01-15", "title": "Ecosystem Carbon Storage Under Different Land Uses In Three Semi-Arid Shrublands And A Mesic Grassland In South Africa", "description": "Carbon (C) storage in biomass and soils is a function of climate, vegetation type, soil type and land management. Carbon storage was examined in intact indigenous vegetation and under different land uses in thicket (250\u2013400 mm mean annual precipitation), xeric shrubland (350 mm), karoo (250 mm), and grassland (900\u20131200 mm). Carbon storage was as follows: (i) mean soil C (0\u201350 cm): thicket (T) = grassland (G) > xeric shrubland on Dwyka sediments (XS) > xeric shrubland on dolerite (XSD) > karoo (K) (168, 164, 65, 34 & 26 t ha\u22121, respectively); (ii) mean root C: T > G > XS = XSD (25.4, 11.4, 7.2 & 7.1 t ha\u22121); (iii) mean above-ground C including leaf litter: T>XS>G>K> XSD (51.6, 12.9, 2.0, 1.7 & 1.51 ha\u22121). Carbon stocks in intact indigenous vegetation were related more to woodiness of vegetation and frequency of fire than to climate. Biomass C was greatest in woody thicket and soil C stocks were greatest in thicket and grassland. Total C storage of 245 t ha\u22129 in thicket is exceptionally high for a semi-arid...", "keywords": ["580", "2. Zero hunger", "biomass", "Sub-Saharan Africa", "Eastern Hemisphere", "World", "land management", "land use", "04 agricultural and veterinary sciences", "15. Life on land", "South Africa", "carbon cycle", "Africa", "0401 agriculture", " forestry", " and fisheries", "Arida", "Southern Africa"]}, "links": [{"href": "https://doi.org/10.1080/02571862.2005.10634705"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/South%20African%20Journal%20of%20Plant%20and%20Soil", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1080/02571862.2005.10634705", "name": "item", "description": "10.1080/02571862.2005.10634705", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1080/02571862.2005.10634705"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2005-01-01T00:00:00Z"}}, {"id": "10.1111/gcbb.12401", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:19:29Z", "type": "Journal Article", "created": "2016-09-03", "title": "Investigating The Biochar Effects On C-Mineralization And Sequestration Of Carbon In Soil Compared With Conventional Amendments Using The Stable Isotope (Delta C-13) Approach", "description": "Abstract<p>Biomass\uffe2\uff80\uff90derived black carbon (biochar) is considered to be an effective tool to mitigate global warming by long\uffe2\uff80\uff90term C\uffe2\uff80\uff90sequestration in soil and to influence C\uffe2\uff80\uff90mineralization via priming effects. However, the underlying mechanism of biochar (BC) priming relative to conventional biowaste (BW) amendments remains uncertain. Here, we used a stable carbon isotope (\uffce\uffb413C) approach to estimate the possible biochar effects on native soil C\uffe2\uff80\uff90mineralization compared with various BW additions and potential carbon sequestration. The results show that immediately after application, BC suppresses and then increases C\uffe2\uff80\uff90mineralization, causing a loss of 0.14\uffe2\uff80\uff937.17\uffc2\uffa0mg\uffe2\uff80\uff90CO2\uffe2\uff80\uff93C\uffc2\uffa0g\uffe2\uff88\uff921\uffe2\uff80\uff90C compared to the control (0.24\uffe2\uff80\uff931.86\uffc2\uffa0mg\uffe2\uff80\uff90CO2\uffe2\uff80\uff93C\uffc2\uffa0g\uffe2\uff88\uff921\uffe2\uff80\uff90C) over 1\uffe2\uff80\uff93120\uffc2\uffa0days. Negative priming was observed for BC compared to various BW amendments (\uffe2\uff88\uff9210.22 to \uffe2\uff88\uff9223.56\uffc2\uffa0mg\uffe2\uff80\uff90CO2\uffe2\uff80\uff93C\uffc2\uffa0g\uffe2\uff88\uff921\uffe2\uff80\uff90soil\uffe2\uff80\uff90C); however, it was trivially positive relative to that of the control (8.64\uffc2\uffa0mg\uffe2\uff80\uff90CO2\uffe2\uff80\uff93C\uffc2\uffa0g\uffe2\uff88\uff921\uffe2\uff80\uff90soil\uffe2\uff80\uff90C). Furthermore, according to the residual carbon and \uffce\uffb413C signature of postexperimental soil carbon, BC\uffe2\uff80\uff90C significantly increased (P\uffc2\uffa0&lt;\uffc2\uffa00.05) the soil carbon stock by carbon sequestration in soil compared with various biowaste amendments. The results of cumulative CO2\uffe2\uff80\uff93C emissions, relative priming effects, and carbon storage indicate that BC reduces C\uffe2\uff80\uff90mineralization, resulting in greater C\uffe2\uff80\uff90sequestration compared with other BW amendments, and the magnitude of this effect initially increases and then decreases and stabilizes over time, possibly due to the presence of recalcitrant\uffe2\uff80\uff90C (4.92\uffc2\uffa0mg\uffe2\uff80\uff90C\uffc2\uffa0g\uffe2\uff88\uff921\uffe2\uff80\uff90soil) in BC, the reduced microbial activity, and the sorption of labile organic carbon (OC) onto BC particles.</p>", "keywords": ["Technology", "Energy & Fuels", "550", "SEA-LEVEL RISE", "PYROLYSIS TEMPERATURE", "WORLD", "DISSOLVED ORGANIC-CARBON", "ATMOSPHERIC CO2", "EMISSIONS", "Science & Technology", "MICROBIAL BIOMASS", "Agriculture", "Biowaste", "04 agricultural and veterinary sciences", "15. Life on land", "Priming Effects", "Carbon Mineralization", "Agronomy", "Carbon Stable Isotope", "Biochar", "Biotechnology & Applied Microbiology", "POOLS", "13. Climate action", "SHORT-TERM", "0401 agriculture", " forestry", " and fisheries", "Life Sciences & Biomedicine", "MATTER", "C-sequestration"]}, "links": [{"href": "https://doi.org/10.1111/gcbb.12401"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/GCB%20Bioenergy", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1111/gcbb.12401", "name": "item", "description": "10.1111/gcbb.12401", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1111/gcbb.12401"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2016-11-29T00:00:00Z"}}, {"id": "10.25674/so92iss2pp121", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:21:29Z", "type": "Journal Article", "title": "Lessons from the WBF2020: extrinsic and intrinsic value of soil organisms", "description": "Following our participation in the first World Biodiversity Forum in Davos, Switzerland, we provide a summary of the main themes of the conference, as well as an overview of the session that was focused on soil biodiversity. One of the main themes of the conference was the valuation of biodiversity and what contributes to the value of biodiversity. In this article we explore whether we should move away from the notion that we can only 'sell' soil biodiversity based on the function and services it provides, and rather shift towards valuing soil biodiversity based on its intrinsic value and our relationship with it.", "keywords": ["0301 basic medicine", "0303 health sciences", "ecosystem functions and services", "Biodiversity", "15. Life on land", "Microbiology", "QR1-502", "03 medical and health sciences", "QL1-991", "13. Climate action", "intrinsic value", "world biodiversity forum", "Zoology", "valuing soil biodiversity", "Taxonomy"]}, "links": [{"href": "https://doi.org/10.25674/so92iss2pp121"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Soil%20organisms", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.25674/so92iss2pp121", "name": "item", "description": "10.25674/so92iss2pp121", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.25674/so92iss2pp121"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2020-01-01T00:00:00Z"}}, {"id": "10.11588/riha.2022.2.92774", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:20:00Z", "type": "Report", "title": "0292 The Fate of the Antiquities Collection of Izabela Dzia\u0142y\u0144ska (ne\u00e9 Czartoryska)", "description": "Open AccessRIHA Journal, 2023: Special Issue 'The Fate of Antiquities in the Nazi Era'", "keywords": ["antiquities", "Fine Arts", "world war ii", "go\u0142uch\u00f3w collection", "greek vases", "war losses", "N", "16. Peace & justice", "occupied poland"], "contacts": [{"organization": "Inga G\u0142uszek, Micha\u0142 Krueger,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.11588/riha.2022.2.92774"}, {"rel": "self", "type": "application/geo+json", "title": "10.11588/riha.2022.2.92774", "name": "item", "description": "10.11588/riha.2022.2.92774", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.11588/riha.2022.2.92774"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-09-01T00:00:00Z"}}, {"id": "10.1594/pangaea.814272", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:20:34Z", "type": "Dataset", "title": "Underway physical oceanography and carbon dioxide measurements during G. O. Sars cruise 58GS20110516", "description": "Cruise QC flag: C (see further details). The Fair Data Use Statement for SOCAT can be found at hdl:10013/epic.48576.d001", "keywords": ["extracted from the World Ocean Atlas 2005", "Salinity", "Salinity", " interpolated", "Fugacity of carbon dioxide (water) at equilibrator temperature (wet air)", "interpolated", "Depth", " bathymetric", " interpolated/gridded", "atmospheric", "Quality flag", "Temperature", " water", "Changes in the carbon uptake and emissions by oceans in a changing climate (CARBOCHANGE)", "G O Sars 2003", "extracted from the NCEP NCAR 40 Year Reanalysis Project", "Distance", "Temperature", "Surface Ocean - Lower Atmosphere Study (SOLAS-Norway)", "extracted from the NCEP/NCAR 40-Year Reanalysis Project", "Surface Ocean CO2 Atlas Project SOCAT", "Algorithm", "extracted from the 2 Minute Gridded Global Relief Data ETOPO2", "Earth System Research", "G. O. Sars (2003)", "Surface Ocean Lower Atmosphere Study SOLAS Norway", "2013", "xCO2 (air)", " interpolated", "bathymetric", "water", "interpolated gridded", "DATE TIME", "Pressure", "14. Life underwater", "Fugacity of carbon dioxide water at equilibrator temperature wet air", "xCO2 water at equilibrator temperature dry air", "58GS20110516", "extracted from the 2-Minute Gridded Global Relief Data (ETOPO2)", "LONGITUDE", "xCO2 air", "extracted from GLOBALVIEW CO2", "DEPTH", " water", "Underway cruise track measurements", "Depth", "Temperature at equilibration", "Surface Ocean CO2 Atlas Project (SOCAT)", "Pressure at equilibration", "Fugacity of carbon dioxide (water) at sea surface temperature (wet air)", "extracted from GLOBALVIEW-CO2", "Changes in the carbon uptake and emissions by oceans in a changing climate CARBOCHANGE", "DATE/TIME", "Recomputed after SOCAT (Pfeil et al.", " 2013)", "13. Climate action", "DEPTH", "LATITUDE", "Recomputed after SOCAT Pfeil et al", "Fugacity of carbon dioxide water at sea surface temperature wet air", "xCO2 (water) at equilibrator temperature (dry air)", "Pressure", " atmospheric", " interpolated"], "contacts": [{"organization": "Johannessen, Truls, Lauvset, Siv K,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.1594/pangaea.814272"}, {"rel": "self", "type": "application/geo+json", "title": "10.1594/pangaea.814272", "name": "item", "description": "10.1594/pangaea.814272", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1594/pangaea.814272"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2014-01-01T00:00:00Z"}}, {"id": "10.1594/pangaea.405442", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:20:34Z", "type": "Dataset", "title": "Water temperature and current velocity from surface drifter SVP_9423494", "keywords": ["Current velocity", "SVP_1325", "water", "north south", "drifting", "Latitude", " error", "Temperature", " water", "Buoy", "DATE TIME", "east west", "Buoy", " drifting", "LONGITUDE", "Latitude", "DEPTH", " water", "Code", "World Ocean Circulation Experiment WOCE", "Temperature", "Current velocity", " east-west", "Drifter", " longterm", "longterm", "error", "Longitude", " error", "DATE/TIME", "Current velocity", " north-south", "Longitude", "DEPTH", "Drifter", "Earth System Research", "LATITUDE", "World Ocean Circulation Experiment (WOCE)"], "contacts": [{"organization": "WOCE Surface Velocity Program, SVP", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.1594/pangaea.405442"}, {"rel": "self", "type": "application/geo+json", "title": "10.1594/pangaea.405442", "name": "item", "description": "10.1594/pangaea.405442", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1594/pangaea.405442"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2006-01-01T00:00:00Z"}}, {"id": "10.1594/pangaea.428754", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:20:34Z", "type": "Dataset", "title": "Daily sea level from coastal tide gauge station Ketchikan in 1974 (Research quality database)", "keywords": ["DATE/TIME", "SeaLevel", "World Ocean Circulation Experiment WOCE", "DATE TIME", "Earth System Research", "Tide gauge station", "Sea level", "World Ocean Circulation Experiment (WOCE)"], "contacts": [{"organization": "WOCE Sea Level, WSL", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.1594/pangaea.428754"}, {"rel": "self", "type": "application/geo+json", "title": "10.1594/pangaea.428754", "name": "item", "description": "10.1594/pangaea.428754", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1594/pangaea.428754"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2006-01-01T00:00:00Z"}}, {"id": "10.5194/bg-19-3505-2022", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:22:40Z", "type": "Journal Article", "created": "2022-07-28", "title": "Reviews and syntheses: The promise of big diverse soil data, moving current practices towards future potential", "description": "<?xml version='1.0' encoding='UTF-8'?><article><p>Abstract. In the age of big data, soil data are more available and richer than ever, but \u2013 outside of a few large soil survey resources \u2013 they remain largely unusable for informing soil management and understanding Earth system processes beyond the original study. Data science has promised a fully reusable research pipeline where data from past studies are used to contextualize new findings and reanalyzed for new insight. Yet synthesis projects encounter challenges at all steps of the data reuse pipeline, including unavailable data, labor-intensive transcription of datasets, incomplete metadata, and a lack of communication between collaborators. Here, using insights from a diversity of soil, data, and climate scientists, we summarize current practices in soil data synthesis across all stages of database creation: availability, input, harmonization, curation, and publication. We then suggest new soil-focused semantic tools to improve existing data pipelines, such as ontologies, vocabulary lists, and community practices. Our goal is to provide the soil data community with an overview of current practices in soil data and where we need to go to fully leverage big data to solve soil problems in the next century.                     </p></article>", "keywords": ["FOS: Computer and information sciences", "0301 basic medicine", "Data Sharing", "Information Systems and Management", "literature review", "1904 Earth-Surface Processes", "Social Sciences", "data set", "01 natural sciences", "Decision Sciences", "Data science", "Life", "QH501-531", "910 Geography & travel", "soil analysis", "database", "QH540-549.5", "2. Zero hunger", "QE1-996.5", "000", "Ecology", "communication", "Physics", "Earth", "Geology", "[SDU.ENVI] Sciences of the Universe [physics]/Continental interfaces", " environment", "World Wide Web", "10122 Institute of Geography", "soil survey", "Physical Sciences", "Data Reuse", "environment", "Information Systems", "Evolution", "future prospect", "Data management", "Data Sharing and Stewardship in Science", "Database", "Big data", "03 medical and health sciences", "Behavior and Systematics", "Data mining", "0105 earth and related environmental sciences", "[SDU.OCEAN]Sciences of the Universe [physics]/Ocean", "Management and Reproducibility of Scientific Workflows", "Metadata", "Data curation", "Atmosphere", "[SDU.OCEAN] Sciences of the Universe [physics]/Ocean", " Atmosphere", "Acoustics", "15. Life on land", "Computer science", "1105 Ecology", " Evolution", " Behavior and Systematics", "Surface Processes", "Harmonization", "FOS: Biological sciences", "Computer Science", "Environmental Science", "[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces", "soil management", "Research Data", "Environmental DNA in Biodiversity Monitoring"]}, "links": [{"href": "https://doi.org/10.5194/bg-19-3505-2022"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Biogeosciences", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.5194/bg-19-3505-2022", "name": "item", "description": "10.5194/bg-19-3505-2022", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5194/bg-19-3505-2022"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2022-07-28T00:00:00Z"}}, {"id": "10.5194/bg-2021-323", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:22:41Z", "type": "Report", "created": "2021-12-15", "title": "Reviews and syntheses: The promise of big soil data, moving current practices towards future potential", "description": "<?xml version='1.0' encoding='UTF-8'?><article><p>Abstract. In the age of big data, soil data are more available than ever, but -outside of a few large soil survey resources- remain largely unusable for informing soil management and understanding Earth system processes outside of the original study. Data science has promised a fully reusable research pipeline where data from past studies are used to contextualize new findings and reanalyzed for global relevance. Yet synthesis projects encounter challenges at all steps of the data reuse pipeline, including unavailable data, labor-intensive transcription of datasets, incomplete metadata, and a lack of communication between collaborators. Here, using insights from a diversity of soil, data and climate scientists, we summarize current practices in soil data synthesis across all stages of database creation: data discovery, input, harmonization, curation, and publication. We then suggest new soil-focused semantic tools to improve existing data pipelines, such as ontologies, vocabulary lists, and community practices. Our goal is to provide the soil data community with an overview of current practices in soil data and where we need to go to fully leverage big data to solve soil problems in the next century.                         </p></article>", "keywords": ["FOS: Computer and information sciences", "Data Sharing", "Biomedical Ontologies and Text Mining", "Data management", "Leverage (statistics)", "01 natural sciences", "Data science", "Data Sharing and Stewardship in Science", "Database", "Big data", "Biochemistry", " Genetics and Molecular Biology", "Machine learning", "Molecular Biology", "Data mining", "0105 earth and related environmental sciences", "2. Zero hunger", "Metadata", "Ecology", "Data curation", "Physics", "Life Sciences", "Acoustics", "15. Life on land", "Computer science", "World Wide Web", "Harmonization", "13. Climate action", "FOS: Biological sciences", "Computer Science", "Physical Sciences", "Environmental Science", "Data Reuse", "Environmental DNA in Biodiversity Monitoring", "Information Systems"]}, "links": [{"href": "https://doi.org/10.5194/bg-2021-323"}, {"rel": "self", "type": "application/geo+json", "title": "10.5194/bg-2021-323", "name": "item", "description": "10.5194/bg-2021-323", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5194/bg-2021-323"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2021-12-15T00:00:00Z"}}, {"id": "10.5194/gmd-11-4139-2018", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:22:49Z", "type": "Journal Article", "created": "2018-04-25", "title": "Global hydro-climatic biomes identified via multitask learning", "description": "<p>Abstract. The most widely-used global land cover and climate classifications are based on vegetation characteristics and/or climatic conditions derived from observational data. However, these classification schemes do not directly stem from the interaction between the local climate and the biotic environment. In this work, we model the dynamic interplay between vegetation and local climate in order to delineate ecoregions that share a coherent response to hydro-climate variability. Our novel framework is based on a multi-task learning approach that discovers the spatial relationships among different locations by learning a low-dimensional representation of predictive structures. This low-dimensional representation is combined with a clustering algorithm that yields a classification of biomes with coherent behaviour. Experimental results using global observation-based data sets indicate that, without the need to prescribe any land cover information, our method is able to identify regions of coherent climate-vegetation interactions that agree well with the expectations derived from traditional global land cover maps. The resulting global hydro-climatic biomes can be used to analyse the anomalous behaviour of specific ecosystems in response to climate extremes and to benchmark climate-vegetation interactions in Earth system models.                         </p>", "keywords": ["0301 basic medicine", "QE1-996.5", "0303 health sciences", "INCREASES", "MODELS", "0207 environmental engineering", "Biology and Life Sciences", "INVESTIGATE", "UNCERTAINTY", "Geology", "WORLD MAP", "02 engineering and technology", "15. Life on land", "FRAMEWORK", "01 natural sciences", "CLASSIFICATION", "03 medical and health sciences", "CONTEXT", "13. Climate action", "Earth and Environmental Sciences", "VEGETATION", "GEOGRAPHICALLY WEIGHTED REGRESSION", "0105 earth and related environmental sciences"]}, "links": [{"href": "https://gmd.copernicus.org/articles/11/4139/2018/gmd-11-4139-2018.pdf"}, {"href": "https://doi.org/10.5194/gmd-11-4139-2018"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Geoscientific%20Model%20Development", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.5194/gmd-11-4139-2018", "name": "item", "description": "10.5194/gmd-11-4139-2018", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5194/gmd-11-4139-2018"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2018-04-25T00:00:00Z"}}, {"id": "10.5281/zenodo.2585890", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:24:18Z", "type": "Dataset", "title": "Each soil deserves a name: Unnamed soils, lost opportunities", "description": "EmbargoThis dataset refers to the Viewpoint published in  Environ. Sci. Technol., doi: 10.1021/acs.est.9b03050", "keywords": ["World Reference Base for Soil Resources", "classification", "mySOIL", "SoilWeb", "SoilGrids", "soil classification", "WRB", "15. Life on land", "USDA Soil Taxonomy"], "contacts": [{"organization": "Certini, Giacomo, Scalenghe, Riccardo,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.5281/zenodo.2585890"}, {"rel": "self", "type": "application/geo+json", "title": "10.5281/zenodo.2585890", "name": "item", "description": "10.5281/zenodo.2585890", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5281/zenodo.2585890"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2019-01-01T00:00:00Z"}}, {"id": "10.5281/zenodo.8171860", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:24:53Z", "type": "Dataset", "title": "Pan-EU Landmask: 10m Resolution Geospatial Land Coverage with Administrative Boundary details on country and regional level", "description": "<strong>Pan-EU Land Mask Summary</strong> Considering the land mask for pan-EU, we will closely match the data coverage of https://land.copernicus.eu/pan-european i.e. the official selection of countries listed here: https://lanEEA39d.copernicus.eu/portal_vocabularies/geotags/eea39. There are a total of three landmask files available, each of which is aligned with the standard spatial/temporal resolution and sizes of AI4SoilHealth Data Cube specifications, which is: Xmin = 900,000, Ymin = 899,000, Xmax = 7,401,000, Ymax = 5,501,000, with Coordinate reference system of epsg:3035. Additionally, these files include a corresponding look-up table that provides explanations for the values present in the raster data. The scripts used to generate these masks can be found here. The masks are: Landmask ISO-code country mask NUTS3 mask <strong>Name convention</strong> To ensure consistency and ease of use across and within the projects, the files here are named according to the standard OpenLandMap file-naming convention. The OpenLandMap file-naming convention works with 10 fields that basically define the most important properties of the data, this way users can search files, prepare data analysis etc, without even needing to access or open files. The 10 fields include: Generic variable name: country.code Variable procedure combination i.e. method standard (standard abbreviation): iso.3166 Position in the probability distribution / variable type: c Spatial support (usually horizontal block) in m or km: 30m Depth reference or depth interval e.g. below ('b'), above ('a') ground or at surface ('s'): s Time reference begin time (YYYYMMDD): 20210101 Time reference end time: 20211231 Bounding box (2 letters max): eu EPSG code: epsg.3035 Version code i.e. creation date: v20230722 An example of a file-name based on the description above: <em>country.code_iso.3166_c_100m_s_20210101_20211231_eu_epsg.3035_v20230722</em> <strong>Landmask</strong> The basic principle to create the land mask is to include as much as land as possible, to avoid missing any land pixels and ensure precise differentiation between land, ocean and inland water bodies. Two reference datasets are used, WorldCover, 10 m resolution. EuroGlobalMap, with shapefiles of administrative boundaries, inland water bodies, ocean and landmask. When generating the land mask, the two reference datasets in a way that: If either of the two reference datasets identifies a pixel as land, it is considered a land pixel in our mask. Regarding ocean and inland water bodies, a pixel is classified as a water pixel only when both reference datasets confirm its identification as water. The landmask consists of 4 values: 10: not in the pan-EU area, i.e. out of mapping scope 1: land 2: inland water 3: ocean This landmask is available in 10m, 30m, 100m, 250m, and 1km resolution formats respectively. The coarse resolution landmasks (&gt;10 m) are generated by resampling from the 10m resolution base map using resampling method \u201cmin\u201d in GDAL. This \u201cmin\u201d method allows taking the minimum values from the contributing pixels, to keep as much land as possible. <strong>ISO-3166 country code mask</strong> This ISO-3166 country code mask is created from EuroGlobalMap country shapefile. This mask is available in 10m, 30m and 100m resolution. In this raster file, each country is assigned a unique value, which allows for the interpretation and analysis of data associated with a specific country. The values are assigned to each country according to iso-3166 country code, which can be found in the corresponding look-up table. The coarse resolution masks (&gt;10 m) are generated by resampling from the 10m resolution base map using resampling method \u201cmode\u201d in GDAL. <strong>NUTS-3 mask</strong> The nuts-3 code mask is created from the European NUTS3 shapefile. In this raster file, each unique NUT3 level area is assigned a unique value, which allows for the interpretation and analysis of data associated with specific NUTS3 regions. The values of pixels and its associated meanings can be found in the corresponding look-up table. This nut-3 code mask is available in 10m, 30m and 100m resolution formats. The coarse resolution masks (&gt;10 m) are generated by resampling from the 10m resolution base map using resampling method \u201cmode\u201d in GDAL. It should be noted that the ISO-code country mask covers a more extensive area compared to the NUTS3 mask. This broader coverage includes countries like Ukraine and others beyond the NUTS3 mask, while NUTS mask shows more details about regional administrative boundaries.", "keywords": ["remote sensing", "EuroGlobalMap", "soil health", "WorldCover", "land mask", "pan Europe", "nuts3", "iso-3166", "15. Life on land", "earth obeservation"], "contacts": [{"organization": "Tian, Xuemeng, Ho, Yu-Feng, Witjes, Martijn, Parente, Leandro, Hengl, Tom, Minarik, Robert,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.5281/zenodo.8171860"}, {"rel": "self", "type": "application/geo+json", "title": "10.5281/zenodo.8171860", "name": "item", "description": "10.5281/zenodo.8171860", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5281/zenodo.8171860"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-07-27T00:00:00Z"}}, {"id": "10.5281/zenodo.8171861", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:24:53Z", "type": "Dataset", "title": "Pan-EU Landmask: 10m Resolution Geospatial Land Coverage with Administrative Boundary details on country and regional level", "description": "<strong>Pan-EU Land Mask Summary</strong> Considering the land mask for pan-EU, we will closely match the data coverage of https://land.copernicus.eu/pan-european i.e. the official selection of countries listed here: https://lanEEA39d.copernicus.eu/portal_vocabularies/geotags/eea39. There are a total of three landmask files available, each of which is aligned with the standard spatial/temporal resolution and sizes of AI4SoilHealth Data Cube specifications, which is: Xmin = 900,000, Ymin = 899,000, Xmax = 7,401,000, Ymax = 5,501,000, with Coordinate reference system of epsg:3035. Additionally, these files include a corresponding look-up table that provides explanations for the values present in the raster data. The scripts used to generate these masks can be found here. The masks are: Landmask ISO-code country mask NUTS3 mask <strong>Name convention</strong> To ensure consistency and ease of use across and within the projects, the files here are named according to the standard OpenLandMap file-naming convention. The OpenLandMap file-naming convention works with 10 fields that basically define the most important properties of the data, this way users can search files, prepare data analysis etc, without even needing to access or open files. The 10 fields include: Generic variable name: country.code Variable procedure combination i.e. method standard (standard abbreviation): iso.3166 Position in the probability distribution / variable type: c Spatial support (usually horizontal block) in m or km: 30m Depth reference or depth interval e.g. below ('b'), above ('a') ground or at surface ('s'): s Time reference begin time (YYYYMMDD): 20210101 Time reference end time: 20211231 Bounding box (2 letters max): eu EPSG code: epsg.3035 Version code i.e. creation date: v20230722 An example of a file-name based on the description above: <em>country.code_iso.3166_c_100m_s_20210101_20211231_eu_epsg.3035_v20230722</em> <strong>Landmask</strong> The basic principle to create the land mask is to include as much as land as possible, to avoid missing any land pixels and ensure precise differentiation between land, ocean and inland water bodies. Two reference datasets are used, WorldCover, 10 m resolution. EuroGlobalMap, with shapefiles of administrative boundaries, inland water bodies, ocean and landmask. When generating the land mask, the two reference datasets in a way that: If either of the two reference datasets identifies a pixel as land, it is considered a land pixel in our mask. Regarding ocean and inland water bodies, a pixel is classified as a water pixel only when both reference datasets confirm its identification as water. The landmask consists of 4 values: 10: not in the pan-EU area, i.e. out of mapping scope 1: land 2: inland water 3: ocean This landmask is available in 10m, 30m, 100m, 250m, and 1km resolution formats respectively. The coarse resolution landmasks (&gt;10 m) are generated by resampling from the 10m resolution base map using resampling method \u201cmin\u201d in GDAL. This \u201cmin\u201d method allows taking the minimum values from the contributing pixels, to keep as much land as possible. <strong>ISO-3166 country code mask</strong> This ISO-3166 country code mask is created from EuroGlobalMap country shapefile. This mask is available in 10m, 30m and 100m resolution. In this raster file, each country is assigned a unique value, which allows for the interpretation and analysis of data associated with a specific country. The values are assigned to each country according to iso-3166 country code, which can be found in the corresponding look-up table. The coarse resolution masks (&gt;10 m) are generated by resampling from the 10m resolution base map using resampling method \u201cmode\u201d in GDAL. <strong>NUTS-3 mask</strong> The nuts-3 code mask is created from the European NUTS3 shapefile. In this raster file, each unique NUT3 level area is assigned a unique value, which allows for the interpretation and analysis of data associated with specific NUTS3 regions. The values of pixels and its associated meanings can be found in the corresponding look-up table. This nut-3 code mask is available in 10m, 30m and 100m resolution formats. The coarse resolution masks (&gt;10 m) are generated by resampling from the 10m resolution base map using resampling method \u201cmode\u201d in GDAL. It should be noted that the ISO-code country mask covers a more extensive area compared to the NUTS3 mask. This broader coverage includes countries like Ukraine and others beyond the NUTS3 mask, while NUTS mask shows more details about regional administrative boundaries.", "keywords": ["remote sensing", "EuroGlobalMap", "soil health", "WorldCover", "land mask", "pan Europe", "nuts3", "iso-3166", "15. Life on land", "earth obeservation"], "contacts": [{"organization": "Tian, Xuemeng, Ho, Yu-Feng, Witjes, Martijn, Parente, Leandro, Hengl, Tom, Minarik, Robert,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.5281/zenodo.8171861"}, {"rel": "self", "type": "application/geo+json", "title": "10.5281/zenodo.8171861", "name": "item", "description": "10.5281/zenodo.8171861", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5281/zenodo.8171861"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-07-27T00:00:00Z"}}, {"id": "109ef559-0459-4056-aff5-282374d01ff9-envidat", "type": "Feature", "geometry": null, "properties": {"updated": "2020-08-13T12:53:54Z", "type": "Dataset", "language": "en", "title": "Soil net nitrogen mineralisation across global grasslands", "description": "This dataset contains all data on which the following publication below is based.  Paper Citation:  Risch, A. C.; Zimmermann, S.; Ochoa-Hueso, R.; Sch\u00fctz, M.; Frey, B.; Firn, J. L.; Fay, P. A.; Hagedorn, F.; Borer, E. T.; Seabloom, E. W.; et al. Soil net nitrogen mineralisation across global grasslands. Nat. Commun. 2019, 10 (1), 4981 (10 pp.). doi.org/10.1038/s41467-019-12948-2  Please cite this paper together with the citation for the datafile.  We conducted coordinated measurements of realised and potential soil net Nmin, and assessed water holding capacity, bulk density, C and N content, texture, pH, pore space, microbial biomass, and archaeal (AOA) and bacterial (AOB) ammonia oxidiser abundance using identical materials and methods across 30 grasslands on six continents. The sites covered a globally relevant range of climatic and edaphic conditions. Climate data was obtained from worldclim - Global climate data https://www.worldclim.org/", "formats": [{"name": "XLS"}], "keywords": ["ch", "global", "grassland", "mineralization", "nutrient-network", "soil", "soil-biology", "soil-chemistry", "worldwide"], "contacts": [{"organization": "Anita C. Risch", "roles": ["creator"]}, {"organization": "https://envidat.ch/#/about", "roles": ["publisher"]}]}, "links": [{"href": "https://www.envidat.ch/#/metadata/soil-net-nitrogen-mineralisation-across-global-grasslands"}, {"href": "https://www.envidat.ch/dataset/soil-net-nitrogen-mineralisation-across-global-grasslands/resource/24108011-8b7b-4da0-9742-2f05576ecbc1"}, {"href": "http://data.europa.eu/88u/dataset/109ef559-0459-4056-aff5-282374d01ff9-envidat"}, {"rel": "self", "type": "application/geo+json", "title": "109ef559-0459-4056-aff5-282374d01ff9-envidat", "name": "item", "description": "109ef559-0459-4056-aff5-282374d01ff9-envidat", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/109ef559-0459-4056-aff5-282374d01ff9-envidat"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"null": "date"}}, {"id": "1e7befc1-a2e0-482b-833c-8cb471fe67ee", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[22.34, 41.24], [22.34, 44.23], [28.6, 44.23], [28.6, 41.24], [22.34, 41.24]]]}, "properties": {"themes": [{"concepts": [{"id": "geoscientificInformation"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}, {"concepts": [{"id": "National"}], "scheme": "Spatial scope"}, {"concepts": [{"id": "Bulgaria"}], "scheme": "Continents, countries, sea regions of the world."}, {"concepts": [], "scheme": "INSPIRE priority data set"}, {"concepts": [{"id": "Soil"}], "scheme": "GEMET - INSPIRE themes, version 1.0"}], "rights": "No limitations to public access", "updated": "2021-11-17T14:15:17.462Z", "type": "Dataset", "language": "eng", "title": "Soil Map of Bulgaria", "description": "The map is made for the field and a great part of the foothill regions according to the materials from the large scaled soil investigations (chiefly in scale 1:25 000), and for the mountain regions-according to the materials from the mean \u2013scaled soil map of the country \u2013 scale 1:200 000 supplemented with preliminary investigations. For the field regions are used also data from P.O. \u201cVodproekt\u201d, as well as published materials and other investigations of: Sl. Ganchev, K. Mancheva, T. Ovcharova, T. Palaveev, L. Raikov, K. Janakiev etc.", "formats": [{"name": "Shp ESRI"}, {"name": "WWW:DOWNLOAD-1.0-http--download"}], "keywords": ["Soil", " map", " soil data", " classification", " FAO", "World", "National", "Bulgaria", "Soil"], "contacts": [{"name": "Prof. DSc. Irena Atanassova", "organization": "ISSAPP \u201cN. Poushkarov\u201d", "position": null, "roles": ["owner"], "phones": [{"value": null}], "emails": [{"value": "soil@mail.bg"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}], "denominator": "400000", "edition": "http://localhost:8080/demodem/editioin"}, "links": [{"href": "http://www.issapp-pushkarov.org/sites/default/files/pictures/soil_shp.rar", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": "download"}, {"href": "https://prodinspire.egov.bg/geonetwork/srv/api/records/1e7befc1-a2e0-482b-833c-8cb471fe67ee/attachments/soil-map1.jpg", "name": "preview", "description": "Web image thumbnail (URL)", "protocol": "WWW:LINK-1.0-http--image-thumbnail", "rel": "preview"}, {"rel": "self", "type": "application/geo+json", "title": "1e7befc1-a2e0-482b-833c-8cb471fe67ee", "name": "item", "description": "1e7befc1-a2e0-482b-833c-8cb471fe67ee", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/1e7befc1-a2e0-482b-833c-8cb471fe67ee"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"interval": ["1957-01-01T00:00:00Z", "1967-03-12T00:00:00Z"]}}, {"id": "20.500.11850/521965", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:26:44Z", "type": "Report", "created": "2021-12-15", "title": "Reviews and syntheses: The promise of big soil data, moving current practices towards future potential", "description": "<?xml version='1.0' encoding='UTF-8'?><article><p>Abstract. In the age of big data, soil data are more available than ever, but -outside of a few large soil survey resources- remain largely unusable for informing soil management and understanding Earth system processes outside of the original study. Data science has promised a fully reusable research pipeline where data from past studies are used to contextualize new findings and reanalyzed for global relevance. Yet synthesis projects encounter challenges at all steps of the data reuse pipeline, including unavailable data, labor-intensive transcription of datasets, incomplete metadata, and a lack of communication between collaborators. Here, using insights from a diversity of soil, data and climate scientists, we summarize current practices in soil data synthesis across all stages of database creation: data discovery, input, harmonization, curation, and publication. We then suggest new soil-focused semantic tools to improve existing data pipelines, such as ontologies, vocabulary lists, and community practices. Our goal is to provide the soil data community with an overview of current practices in soil data and where we need to go to fully leverage big data to solve soil problems in the next century.</p></article>", "keywords": ["FOS: Computer and information sciences", "Data Sharing", "Biomedical Ontologies and Text Mining", "Data management", "Leverage (statistics)", "01 natural sciences", "Data science", "Data Sharing and Stewardship in Science", "Database", "Big data", "Biochemistry", " Genetics and Molecular Biology", "Machine learning", "Molecular Biology", "Data mining", "0105 earth and related environmental sciences", "2. Zero hunger", "Metadata", "Ecology", "Data curation", "Physics", "Life Sciences", "Acoustics", "15. Life on land", "Computer science", "World Wide Web", "Harmonization", "13. Climate action", "FOS: Biological sciences", "Computer Science", "Physical Sciences", "Environmental Science", "Data Reuse", "Environmental DNA in Biodiversity Monitoring", "Information Systems"]}, "links": [{"href": "https://doi.org/20.500.11850/521965"}, {"rel": "self", "type": "application/geo+json", "title": "20.500.11850/521965", "name": "item", "description": "20.500.11850/521965", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/20.500.11850/521965"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2021-12-15T00:00:00Z"}}, {"id": "20.500.11850/562259", "type": "Feature", "geometry": null, "properties": {"updated": "2026-07-27T16:26:44Z", "type": "Journal Article", "created": "2022-07-28", "title": "Reviews and syntheses: The promise of big diverse soil data, moving current practices towards future potential", "description": "<?xml version='1.0' encoding='UTF-8'?><article><p>Abstract. In the age of big data, soil data are more available and richer than ever, but \u2013 outside of a few large soil survey resources \u2013 they remain largely unusable for informing soil management and understanding Earth system processes beyond the original study. Data science has promised a fully reusable research pipeline where data from past studies are used to contextualize new findings and reanalyzed for new insight. Yet synthesis projects encounter challenges at all steps of the data reuse pipeline, including unavailable data, labor-intensive transcription of datasets, incomplete metadata, and a lack of communication between collaborators. Here, using insights from a diversity of soil, data, and climate scientists, we summarize current practices in soil data synthesis across all stages of database creation: availability, input, harmonization, curation, and publication. We then suggest new soil-focused semantic tools to improve existing data pipelines, such as ontologies, vocabulary lists, and community practices. Our goal is to provide the soil data community with an overview of current practices in soil data and where we need to go to fully leverage big data to solve soil problems in the next century.</p></article>", "keywords": ["FOS: Computer and information sciences", "0301 basic medicine", "Data Sharing", "Information Systems and Management", "literature review", "1904 Earth-Surface Processes", "Social Sciences", "data set", "01 natural sciences", "Decision Sciences", "Data science", "Life", "QH501-531", "910 Geography & travel", "soil analysis", "database", "QH540-549.5", "2. Zero hunger", "QE1-996.5", "000", "Ecology", "communication", "Physics", "Earth", "Geology", "[SDU.ENVI] Sciences of the Universe [physics]/Continental interfaces", " environment", "World Wide Web", "10122 Institute of Geography", "soil survey", "Physical Sciences", "Data Reuse", "environment", "Information Systems", "Evolution", "future prospect", "Data management", "Data Sharing and Stewardship in Science", "Database", "Big data", "03 medical and health sciences", "Behavior and Systematics", "Data mining", "0105 earth and related environmental sciences", "[SDU.OCEAN]Sciences of the Universe [physics]/Ocean", "Management and Reproducibility of Scientific Workflows", "Metadata", "Data curation", "Atmosphere", "[SDU.OCEAN] Sciences of the Universe [physics]/Ocean", " Atmosphere", "Acoustics", "15. Life on land", "Computer science", "1105 Ecology", " Evolution", " Behavior and Systematics", "Surface Processes", "Harmonization", "FOS: Biological sciences", "Computer Science", "Environmental Science", "[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces", "soil management", "Research Data", "Environmental DNA in Biodiversity Monitoring"]}, "links": [{"href": "https://doi.org/20.500.11850/562259"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Biogeosciences", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "20.500.11850/562259", "name": "item", "description": "20.500.11850/562259", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/20.500.11850/562259"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2022-07-28T00:00:00Z"}}, {"id": "fce1a084-df72-4331-9919-fb0b46c58d3c", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-180.0, -89.9], [-180.0, 83.66], [180.0, 83.66], [180.0, -89.9], [-180.0, -89.9]]]}, "properties": {"themes": [{"concepts": [{"id": "boundaries"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}, {"concepts": [{"id": "Europe"}, {"id": "World"}, {"id": "Slovakia"}, {"id": "Netherlands"}, {"id": "Lithuania"}, {"id": "Greece"}, {"id": "Latvia"}, {"id": "Austria"}, {"id": "Belgium"}, {"id": "Bulgaria"}, {"id": "Switzerland"}, {"id": "Cyprus"}, {"id": "Germany"}, {"id": "Finland"}, {"id": "Spain"}, {"id": "Denmark"}, {"id": "Hungary"}, {"id": "Sweden"}, {"id": "Malta"}, {"id": "Luxembourg"}, {"id": "Estonia"}, {"id": "Ireland"}, {"id": "Croatia"}, {"id": "Portugal"}, {"id": "Poland"}, {"id": "Czechia"}, {"id": "Slovenia"}, {"id": "Romania"}, {"id": "Italy"}, {"id": "France"}, {"id": "United Kingdom"}, {"id": "T\u00fcrkiye"}, {"id": "North Macedonia"}, {"id": "Montenegro"}, {"id": "EFTA4"}, {"id": "EU28 (2013-2020)"}, {"id": "Albania"}, {"id": "Liechtenstein"}, {"id": "Serbia"}, {"id": "Norway"}, {"id": "Iceland"}, {"id": "Kosovo (UNSCR 1244/99)"}, {"id": "Moldova"}], "scheme": "Continents, countries, sea regions of the world."}, {"concepts": [{"id": "Water"}], "scheme": "https://www.eea.europa.eu/themes"}, {"concepts": [{"id": "administrative boundary"}, {"id": "census survey"}, {"id": "urbanisation"}, {"id": "protected area"}, {"id": "soil erosion"}, {"id": "vegetation"}, {"id": "biogeography"}, {"id": "statistical information"}, {"id": "national boundary"}, {"id": "boundary layer"}, {"id": "political geography"}, {"id": "world"}, {"id": "European Commission"}, {"id": "statistical information system"}, {"id": "sub-national boundary"}, {"id": "coast"}, {"id": "economic zoning"}, {"id": "region"}, {"id": "international agreement"}], "scheme": "GEMET"}, {"concepts": [{"id": "Land cover"}, {"id": "Population distribution \u2014 demography"}, {"id": "Elevation"}, {"id": "Transport networks"}, {"id": "Administrative units"}, {"id": "Area management/restriction/regulation zones and reporting units"}, {"id": "Hydrography"}, {"id": "Statistical units"}], "scheme": "GEMET - INSPIRE themes, version 1.0"}, {"concepts": [{"id": "European"}, {"id": "Global"}], "scheme": "http://inspire.ec.europa.eu/metadata-codelist/SpatialScope"}], "updated": "2025-10-09T11:25:15.268769Z", "type": "Dataset", "language": "eng", "title": "Geographic Information System of the European Commission (GISCO)", "description": "This metadata refers to the whole content of GISCO reference database, which contains both public datasets (also available for the general public through http://ec.europa.eu/eurostat/web/gisco/geodata) and datasets to be used only internally by the EEA (typically, but not only, GISCO datasets at 1:100k).", "keywords": ["Europe", "World", "Slovakia", "Netherlands", "Lithuania", "Greece", "Latvia", "Austria", "Belgium", "Bulgaria", "Switzerland", "Cyprus", "Germany", "Finland", "Spain", "Denmark", "Hungary", "Sweden", "Malta", "Luxembourg", "Estonia", "Ireland", "Croatia", "Portugal", "Poland", "Czechia", "Slovenia", "Romania", "Italy", "France", "United Kingdom", "T\u00fcrkiye", "North Macedonia", "Montenegro", "EFTA4", "EU28 (2013-2020)", "Albania", "Liechtenstein", "Serbia", "Norway", "Iceland", "Kosovo (UNSCR 1244/99)", "Moldova", "Water", "administrative boundary", "census survey", "urbanisation", "protected area", "soil erosion", "vegetation", "biogeography", "statistical information", "national boundary", "boundary layer", "political geography", "world", "European Commission", "statistical information system", "sub-national boundary", "coast", "economic zoning", "region", "international agreement", "Land cover", "Population distribution \u2014 demography", "Elevation", "Transport networks", "Administrative units", "Area management/restriction/regulation zones and reporting units", "Hydrography", "Statistical units", "European", "Global"], "denominator": "100000"}, "links": [{"href": "https://sdi.eea.europa.eu/public/catalogue-graphic-overview/e3d45e69-0bd0-46ff-8f99-5d123ef36636.png", "name": "preview", "description": "Web image thumbnail (URL)", "protocol": "WWW:LINK-1.0-http--image-thumbnail", "rel": "preview"}, {"rel": "self", "type": "application/geo+json", "title": "fce1a084-df72-4331-9919-fb0b46c58d3c", "name": "item", "description": "fce1a084-df72-4331-9919-fb0b46c58d3c", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/fce1a084-df72-4331-9919-fb0b46c58d3c"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"interval": ["1996-01-01T00:00:00Z", "2009-01-13T00:00:00Z"]}}, {"id": "Carta-dei-suoli-d\u2019Italia,-scala-11.000.000", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[6.75, 36.62], [6.75, 47.12], [18.48, 47.12], [18.48, 36.62], [6.75, 36.62]]]}, "properties": {"themes": [{"concepts": [{"id": "geoscientificInformation"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}, {"concepts": [{"id": "National"}], "scheme": "https://inspire.ec.europa.eu/metadata-codelist/SpatialScope"}, {"concepts": [{"id": "MensMeu"}], "scheme": "Source"}, {"concepts": [{"id": "Italy"}], "scheme": "http://publications.europa.eu/resource/authority/country"}, {"concepts": [{"id": "Soil Map"}], "scheme": "http://aims.fao.org/aos/agrovoc/c_330883"}], "updated": "12-09-2022", "type": "Dataset", "created": "12-09-2022", "language": "ita", "title": "The soil province geodatabase of Italy, storing information of soil typological units and broad soil regions at the 1:1,000,000 and 1:10,000,000 scales", "description": "The Soil Map of Italy at 1:1,000,000 scale, was the result of the work of Edoardo AC Costantini, Giovanni L''Abate, Roberto Barbetti, Maria Fantappi\u00e9, Romina Lorenzetti, and Simona Magini affiliated to Research Centre for agrobiology and soil science (CREA-ABP), in collaboration with several regional institutions, universities and other research centers of the CREA - Consiglio per la ricerca in agricoltura e l''analisi dell''economia agraria. The map, was printed by S.EL.CA. of Florence. The map is an informative and educational work of general scientific interest, which updates the previous one edited by prof. Fiorenzo Mancini and collaborators in 1966 both in terms of knowledge and of the adopted methods. It was produced processing of all data within a geographical and soil geodatabase, collected by the CREA-ABP and other institutions collaborating in over ten years of work and using the latest international methods. The soil map shows the distribution of major soils in the country and constitutes a milestone in the process launched in 1999 as part of the project the Soil Map of Italy at a scale of 1:250,000, funded by MIPAAF and implemented in collaboration with the regional institutions. Both broad soil regions and soil provinces (reference scale 1:10,000,000 and 1:1,000,000) are reported. \nMost small-scale soil maps report dominant typological units and allow only a partial appraisal of pedodiversity since territories with similar dominant soils can actually possess different pedodiversity. This is particularly true at the national scale, where a great wealth of soil information collected at more detailed scales is generalized.\nA methodology was set up, which aimed at preserving pedodiversity in upscaling soil maps by using geomatic techniques and the World Reference Base for soil resources (WRB). The main source of information was the soil system geodatabase of Italy, storing information of soil typological units and soilscapes at the 1:500,000 reference scale. Qualitative aggregation of soil taxa followed upscaling rules aimed at (i) maintaining the information about pedogenetic processes and (ii) grouping soilscapes showing recurrent patterns of soil forming processes. The upscaling methodology can be summarized in seven steps as follows (1) soil forming processes selection, retrieved from soil typological units stored in the national database; (2) upscaling soil systems and creation of broad soil regions at 1:10,000,000 reference scale; (3) semantic upscaling of typological units to form taxa showing different soil forming processes; (4) ranking and associating soil forming processes; (5) geography upscaling of soil systems geometry to form polygons at 1:1,000,000 reference scale, called subregions; (6) ranking subregions according to their extension; (7) naming subregions by ranking the taxa according to the number of soil typological units.\nThe soil subregion map reported 47 map unit and 148 taxa, belonging to 22 reference soil group of WRB and showing from one to four qualifiers. Each map unit had from 2 to 18 taxa, for a total of 317 occurrences. Thirty taxa had 3 or more occurrences, while the remaining took place in one or two subregions only.", "formats": [{"name": "canonical"}], "keywords": ["Database", "soil typological units", "soilscapes", "World Reference Base for Soil Resources (WRB)", "basic soil properties", "National", "MensMeu", "Italy", "Soil Map"], "contacts": [{"name": "Giovanni L'Abate", "organization": "CREA", "position": null, "roles": ["pointOfContact"], "phones": [{"value": null}], "emails": [{"value": "giovanni.labate@crea.gov.it"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": "Italy"}], "links": [{"href": {"url": null, "protocol": null, "protocol_url": "", "name": null, "name_url": "", "description": null, "description_url": "", "applicationprofile": null, "applicationprofile_url": "", "function": null}}]}]}, "links": [{"href": "https://zenodo.org/records/7072306", "name": "MDB", "rel": null}, {"href": "https://github.com/ejpsoil/ejpsoildatahub/tree/main/datasets/mensmeu/Italy/Carta-dei-suoli-d'Italia-scala-1.yml", "name": "Source of the record", "protocol": "canonical", "rel": "canonical"}, {"rel": "self", "type": "application/geo+json", "title": "Carta-dei-suoli-d\u2019Italia,-scala-11.000.000", "name": "item", "description": "Carta-dei-suoli-d\u2019Italia,-scala-11.000.000", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Carta-dei-suoli-d\u2019Italia,-scala-11.000.000"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"null": "date"}}, {"id": "509ad644-efd3-4ac1-b663-550532a27ea0", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-180.0, -56.0], [-180.0, 84.0], [180.0, 84.0], [180.0, -56.0], [-180.0, -56.0]]]}, "properties": {"themes": [{"concepts": [{"id": "geoscientificInformation"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}, {"concepts": [{"id": "Soil science"}], "scheme": "Stratum"}, {"concepts": [{"id": "Global"}], "scheme": "Region"}], "updated": "2025-10-16T13:35:50", "type": "Dataset", "language": "eng", "title": "ISRIC Soil Information System (ISIS)", "description": "ISRIC Soil Information System (ISIS) brings the ISRIC World Soil Reference Collection on-line and characterizes a collection of monoliths with morphological, analytical data (chemical and physical) that represent the main soil groups of the World. ISIS holds data on the World Soil Reference Collection including over 950 monoliths from over 74 countries with detailed soil profile and environmental data. The collection provides a scientific reference for the legend of the FAO_UNESCO Soil Map of the World and internation soil classification system that evolved from it, the World Reference Base for Soil Resources (WRB) and other international systems (USDA Soil Taxonomy).\n\nUsers currently have access to site data (60 attributes on location, geology, landform, soil surface properties, hydrology, land-use, vegetation and climate) and soil data (soil profile description according to the FAO Guidelines; 100 physical, chemical and mineralogical attributes; and attributes for classification in the FAO-Unesco Legend (1974), the Revised FAO-Unesco Legend (1988), World Reference Base for Soil Resources (all versions), USDA Soil Taxonomy, and a national classification system, as available). ISRIC will continue to enlarge its soil reference collection.", "formats": [{"name": "GraphQL"}, {"name": "download"}, {"name": "WWW:LINK-1.0-http--link"}], "keywords": ["monolith", "world reference base", "Soil science", "Global"], "contacts": [{"name": "Stephan Mantel", "organization": "ISRIC - World Soil Information", "position": "Custodian World Soil Museum", "roles": ["custodian"], "phones": [{"value": null}], "emails": [{"value": "Stephan.Mantel@isric.org"}], "addresses": [{"deliveryPoint": ["PO Box 353"], "city": "Wageningen", "administrativeArea": null, "postalCode": "6700AJ", "country": "Netherlands"}], "links": [{"href": {"url": "https://wsm.isric.org", "protocol": null, "protocol_url": "", "name": null, "name_url": "", "description": null, "description_url": "", "applicationprofile": null, "applicationprofile_url": "", "function": null}}]}], "distancevalue": "10", "distanceuom": "m"}, "links": [{"href": "https://graphql.isric.org/isis/graphql", "name": "graphql endpoint", "protocol": "download", "rel": "download"}, {"href": "https://graphql.isric.org/isis/graphiql", "name": "User interface", "description": "User interface to facilitate queries to the graphql endpoint", "protocol": "WWW:LINK-1.0-http--link", "rel": null}, {"href": "https://isis.isric.org", "name": "Website", "description": "Website to browse the collection", "protocol": "WWW:LINK-1.0-http--link", "rel": null}, {"href": "https://isric.euwest01.umbraco.io//media/yzhlkf0w/dsc_0704.jpg?quality=75&rxy=0.5%2C0.5", "name": "preview", "description": "Web image thumbnail (URL)", "protocol": "WWW:LINK-1.0-http--image-thumbnail", "rel": "preview"}, {"rel": "self", "type": "application/geo+json", "title": "509ad644-efd3-4ac1-b663-550532a27ea0", "name": "item", "description": "509ad644-efd3-4ac1-b663-550532a27ea0", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/509ad644-efd3-4ac1-b663-550532a27ea0"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"interval": ["1950-01-01T00:00:00Z", "2015-12-01T00:00:00Z"]}}, {"id": "wrb2014-map", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-180.0, -90.0], [-180.0, 90.0], [180.0, 90.0], [180.0, -90.0], [-180.0, -90.0]]]}, "properties": {"themes": [{"concepts": [{"id": "geoscientificInformation"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}], "updated": "2025-01-08T13:36:23", "type": "Dataset", "created": "2015-12-31", "language": "None", "externalIds": [{"value": "https://doi.org/10.17027/isric-wdcsoils-h7aa-qm24"}], "title": "Soils of the World, according to the World Reference Base for Soil Resources (WRB 2014, Update 2015)", "description": "This map was prepared based on the Harmonised World Soil Database (HSWD), v1.2 and using the World Reference Base for Soil Resources (WRB) 2014, update 2015. The map units were derived from aggregation of the HWSD units using the soil associations as defined in the short key of the WRB2014 document. The various steps in aggregation and translation are documented in a report. The aggregated World Soil Map map was prepared on request of the Heinrich-Boell-Stiftung.", "formats": [{"name": "application/vnd.shp"}, {"name": "application/pdf"}], "keywords": ["Soil", "WRB", "World Reference Base"], "contacts": [{"name": "Stephan Mantel", "organization": "ISRIC - World Soil Information", "position": null, "roles": ["pointOfContact"], "phones": [{"value": null}], "emails": [{"value": "stephan.mantel@isric.org"}], "addresses": [{"deliveryPoint": ["PO Box 353"], "city": "Wageningen", "administrativeArea": null, "postalCode": "6700AJ", "country": "Netherlands"}], "links": [{"href": {"url": "https://www.isric.org", "protocol": null, "protocol_url": "", "name": null, "name_url": "", "description": null, "description_url": "", "applicationprofile": null, "applicationprofile_url": "", "function": null}}]}, {"name": "T. 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Reports, articles, papers, scientific and non - scientific works of any form, including tables, maps, or any other kind of output, in printed or electronic form, based in whole or in part on the data supplied, must contain an acknowledgement of the form: \"Data reused from the BonaRes Data Centre www.bonares.de. This data were created as part of the BonaRes Module A-Project - InnoSoilPhos's research activities.\" Although every care has been taken in preparing and testing the data, the BonaRes Module A-Project - InnoSoilPhos and the BonaRes Data Centre cannot guarantee that the data are correct; neither does the BonaRes Module A-Project - InnoSoilPhos and the BonaRes Data Centre accept any liability whatsoever for any error, missing data or omission in the data, or for any loss or damage arising from its use. The BonaRes Module A-Project - InnoSoilPhos and BonaRes Data Centre will not be responsible for any direct or indirect use which might be made of the data. 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It describes and disseminates the geospatial data which underlie FAOSTAT statistics on drained organic soils. Particularly, this metadata includes the annual area drained by cropland and grazed grassland on organic soils (in ha) for the years 1992 \u2013 2018. The associate geospatial dataset is named Drained Organic Soils Area Annual (DROSA - A).\n\nOrganic soils are wet soils ecosystems, characterized by high levels of organic matter, which accumulates under the anoxic conditions that exist in the presence of water. They include tropical and boreal peatlands, high-latitude bogs, ferns and mires. While organic soils cover globally a mere 3 percent of the terrestrial land area, they represent up to 30 percent of the total soil carbon, playing an important role in maintaining the earth\u2019s carbon balance. Agriculture is a major cause of drainage of organic soils around the world and restoration of degraded organic soils is currently a priority in several countries as part of their commitments under the climate convention. \n\nEstimates of drainage area and greenhouse gas (GHG) emissions from organic soils for the year 2000 were developed earlier by FAO and used by the Intergovernmental Panel on Climate Change (IPCC) for global analysis. That preliminary work was based on the geospatial overlay of two static maps, one for land cover, indicating presence of agriculture, and one for soil characteristics, indicating presence of organic soils. \n\nThis version advances with additional methodological developments which, owing to the availability of time dependent land cover maps,  resulted in the production, for the first time, of estimates over a complete time series (1990 \u2013 2019). Geospatial data are then aggregated at national level and disseminated in FAOSTAT with a structure in line with country reporting requirements to the Climate Convention and following 2006 IPCC guidelines. FAOSTAT estimates use histosols as proxy for presence of organic soils, in agreement with IPCC and annual land cover maps as time-dependent component. \n\nMore information can be found in:\n\na) FAO 2020. Drained organic soils 1990 \u2013 2019. Global, regional and country trends. 3rd FAOSTAT Analytical Brief Series (under finalization)\n\nb) Conchedda G. and F.N. Tubiello. Area of Drained Organic Soils and Associated Greenhouse Gas Emissions. Validation of FAOSTAT estimates with country data. FAO Statistics Working Paper Series (submitted) \n\nc) Tubiello F.N., Biancalani R., Salvatore M., Rossi S., and Conchedda G. 2016. A worldwide assessment of greenhouse gas emissions from drained organic soils. Sustainability 8, 371. 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For reasons of data quality and consistency of the HWSD, reference bulk density values \u2013 calculated using equations developed by Saxton et al. (1986), have been used here: these equations represent a statistical estimate and reflect only the textural influence.", "formats": [{"name": "GeoTIFF"}, {"name": "WWW:DOWNLOAD-1.0-http--download"}, {"name": "OGC:WMS-1.3.0-http-get-map"}, {"name": "WWW:LINK-1.0-http--link"}], "keywords": ["harmonized world soil database", "Topsoil Reference Bulk Density", "bulk density", "topsoil", "HiH_SOIL", "Tag_soil", "World"], "contacts": [{"name": "Ronald Vargas", "organization": "Food and Agriculture Organization of the UN", "position": null, "roles": ["pointOfContact"], "phones": [{"value": null}], "emails": [{"value": "GSP-Secretariat@fao.org"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}]}, "links": [{"href": "http://www.fao.org/docrep/018/aq361e/aq361e.pdf", "name": "Report: Harmonized World Soil Database Version 1.2 February 2012", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://data.apps.fao.org/map/gsrv/gsrv1/gsoc/wms?service=WMS&version=1.3.0&request=GetCapabilities", "name": "gsoc:T_REF_BULK", "description": "Topsoil Reference Bulk Density", "protocol": "OGC:WMS-1.3.0-http-get-map", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/geonetwork/gsoc/HWSD/T_REF_BULK.tif", "description": "Download - Topsoil Reference Bulk Density (TIFF)", "protocol": "WWW:LINK-1.0-http--link", "rel": null}, {"rel": "self", "type": "application/geo+json", "title": "1d1e1137-de10-464c-9ea7-a945198cf7dc", "name": "item", "description": "1d1e1137-de10-464c-9ea7-a945198cf7dc", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/1d1e1137-de10-464c-9ea7-a945198cf7dc"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date-time": "2022-11-03T15:13:10Z"}}, {"id": "2125f445-57e4-4fb4-b167-6ea96a915bc8", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-180.0, -55.92], [-180.0, 83.66], [180.0, 83.66], [180.0, -55.92], [-180.0, -55.92]]]}, "properties": {"themes": [{"concepts": [{"id": "environment"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}], "updated": "2012-11-09T12:01:37", "created": "2012-04-11T00:00:00", "language": "eng", "title": "GAP (classes) in carbon sequestration for subsoil in 2100 under B1", "description": "This dataset represents the potential GAP in SOC (Soil Potential Carbon) stock for subsoil in 2100 (long term) under B1 IPCC emission scenario. GAP is expressed in terms of class differences between ACTUAL and POTENTIAL subsoil carbon sequestration under the same scenario ans time frame.", "formats": [{"name": "WWW:LINK-1.0-http--link"}, {"name": "WWW:DOWNLOAD-1.0-http--download"}, {"name": "OGC:WMS-1.1.1-http-get-map"}], "keywords": ["soil organic carbon", "stock", "GAP", "subsoil", "long term", "emission scenario", "Tag_SOC", "World"], "contacts": [{"name": "Monia Santini, Tommaso Chiti", "organization": "University of Tuscia, DIBAF Department", "position": "Consultants", "roles": ["originator"], "phones": [{"value": "+390761357251"}], "emails": [{"value": "monia.santini@unitus.it; tommaso.chiti@unitus.it"}], "addresses": [{"deliveryPoint": ["via S. Camillo de Lellis snc"], "city": "Viterbo", "administrativeArea": null, "postalCode": "01100", "country": null}], "links": [{"href": null}]}, {"organization": "University of Tuscia, DIBAF Department", "roles": ["creator"]}], "denominator": "40000000", "edition": "First"}, "links": [{"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/2125f445-57e4-4fb4-b167-6ea96a915bc8/resources/s_b1_2100_gap.zip", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://data.apps.fao.org/map/catalog/srv/api/records/2125f445-57e4-4fb4-b167-6ea96a915bc8/attachments/", "name": "preview", "description": "Web image thumbnail (URL)", "protocol": "WWW:LINK-1.0-http--image-thumbnail", "rel": "preview"}, {"href": "https://data.apps.fao.org/map/catalog/srv/api/records/2125f445-57e4-4fb4-b167-6ea96a915bc8/attachments/", "name": "preview", "description": "Web image thumbnail (URL)", "protocol": "WWW:LINK-1.0-http--image-thumbnail", "rel": "preview"}, {"rel": "self", "type": "application/geo+json", "title": "2125f445-57e4-4fb4-b167-6ea96a915bc8", "name": "item", "description": "2125f445-57e4-4fb4-b167-6ea96a915bc8", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/2125f445-57e4-4fb4-b167-6ea96a915bc8"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date-time": "2012-11-09T12:01:37Z"}}, {"id": "21885567-5313-429d-a899-a92cc67e86a0", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-180.0, -90.0], [-180.0, 90.0], [180.0, 90.0], [180.0, -90.0], [-180.0, -90.0]]]}, "properties": {"themes": [{"concepts": [{"id": "geoscientificInformation"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}], "updated": "2022-11-03T09:59:39", "language": "eng", "title": "Oxygen Availability to Roots (HWSD)", "description": "On the basis of soil parameters provided by the Harmonized World Soil Database (HWSD) seven key soil qualities important for crop production have been derived, namely: nutrient availability, nutrient retention capacity, rooting conditions, oxygen availability to roots, excess salts, toxicities, and workability. Soil qualities are related to the agricultural use of the soil and more specifically to specific crop requirements and tolerances. For the illustration of soil qualities, maize was selected as reference crop because of its global importance and wide geographical distribution.\n\nOxygen availability (SQ4)\n\nOxygen availability in soils is largely defined by drainage characteristics of soils. The determination of soil drainage classes is based on procedures developed at FAO (FAO 1995). These procedures take into account soil type, soil texture, soil phases and terrain slope.\n\nApart from drainage characteristics, the soil quality of oxygen availability may be influenced by soil and terrain characteristics that are defined through the occurrence of specific soil phases. These include for the FAO \u201874 classification soil phases indicating phreatic conditions, and for the FAO \u201990 classification soil phases indicating respectively phreatic, anthraquic, inundic, or placic conditions.\n\nNote that the classes used in the Soil Quality evaluation are:\n\n1: No or slight limitations\n\n2: Moderate limitations\n\n3: Sever limitations\n\n4: Very severe limitations\n\n5: Mainly non-soil\n\n6: Permafrost area\n\n7: Water bodies\n\nRemember that classes are qualitative not quantitative. Only classes 1 to 4 are corresponding to an assessment of soil limitations for plant growth. Class 1 is generally rated between 80 and 100% of the growth potential, class 2 between 60 and 80%, class 3 between 40 and 60%, and class 4 less than 40%.", "formats": [{"name": "GeoTIFF"}, {"name": "WWW:DOWNLOAD-1.0-http--download"}, {"name": "OGC:WMS-1.1.1-http-get-map"}, {"name": "WWW:LINK-1.0-http--link"}], "keywords": ["harmonized world soil database", "soil quality", "Oxygen Availability to Roots", "HiH_SOIL", "Tag_soil", "World"], "contacts": [{"name": "Ronald Vargas", "organization": "Food and Agriculture Organization of the UN", "position": null, "roles": ["pointOfContact"], "phones": [{"value": null}], "emails": [{"value": "GSP-Secretariat@fao.org"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}]}, "links": [{"href": "http://www.fao.org/docrep/018/aq361e/aq361e.pdf", "name": "Report: Harmonized World Soil Database Version 1.2 February 2012", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://data.apps.fao.org/map/gsrv/gsrv1/gsoc/wms?service=WMS&version=1.3.0&request=GetCapabilities", "name": "gsoc:sq4", "description": "Soil Quality: Oxygen Availability to Roots (HWSD)", "protocol": "OGC:WMS-1.1.1-http-get-map", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/geonetwork/gsoc/SQ/sq4.tif", "description": "Download - SQ4 (TIFF)", "protocol": "WWW:LINK-1.0-http--link", "rel": null}, {"rel": "self", "type": "application/geo+json", "title": "21885567-5313-429d-a899-a92cc67e86a0", "name": "item", "description": "21885567-5313-429d-a899-a92cc67e86a0", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/21885567-5313-429d-a899-a92cc67e86a0"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date-time": "2022-11-03T09:59:39Z"}}, {"id": "21f3a653-6422-4bbd-8937-5a29477620fe", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-180.0, -90.0], [-180.0, 90.0], [180.0, 90.0], [180.0, -90.0], [-180.0, -90.0]]]}, "properties": {"themes": [{"concepts": [{"id": "geoscientificInformation"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}], "updated": "2022-11-03T10:10:28", "language": "eng", "title": "Soil or non-Soil Unit", "description": "ISSOIL (Flag for non-soil units).\nField indicating if the soil mapping unit is a soil or a non-soil.\nCODE ISSOIL\n0 Non-soil unit\n1 Soil", "formats": [{"name": "GeoTIFF"}, {"name": "WWW:DOWNLOAD-1.0-http--download"}, {"name": "OGC:WMS-1.3.0-http-get-map"}, {"name": "WWW:LINK-1.0-http--link"}], "keywords": ["harmonized world soil database", "non-soil unit", "HiH_SOIL", "Tag_soil", "World"], "contacts": [{"name": "Ronald Vargas", "organization": "Food and Agriculture Organization of the UN", "position": null, "roles": ["pointOfContact"], "phones": [{"value": null}], "emails": [{"value": "GSP-Secretariat@fao.org"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}]}, "links": [{"href": "http://www.fao.org/docrep/018/aq361e/aq361e.pdf", "name": "Report: Harmonized World Soil Database Version 1.2 February 2012", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://data.apps.fao.org/map/gsrv/gsrv1/gsoc/wms?service=WMS&version=1.3.0&request=GetCapabilities", "name": "gsoc:ISSOIL", "description": "Soil or non-Soil Unit", "protocol": "OGC:WMS-1.3.0-http-get-map", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/geonetwork/gsoc/HWSD/ISSOIL.tif", "description": "Download - Soil or non-Soil Unit (TIFF)", "protocol": "WWW:LINK-1.0-http--link", "rel": null}, {"rel": "self", "type": "application/geo+json", "title": "21f3a653-6422-4bbd-8937-5a29477620fe", "name": "item", "description": "21f3a653-6422-4bbd-8937-5a29477620fe", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/21f3a653-6422-4bbd-8937-5a29477620fe"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date-time": "2022-11-03T10:10:28Z"}}, {"id": "2427214a-42dc-4862-b58a-00b73cbc7a6f", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-180.0, -90.0], [-180.0, 90.0], [180.0, 90.0], [180.0, -90.0], [-180.0, -90.0]]]}, "properties": {"themes": [{"concepts": [{"id": "geoscientificInformation"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}], "updated": "2022-11-03T15:07:00", "language": "eng", "title": "Topsoil CEC (CLAY)", "description": "This field gives the cation exchange capacity of the clay fraction in top-soil.\nThe type of clay mineral dominantly present in the soil is often characterizes a specific set of\npedogenetic factors in which the soil has developed. Tropical, leaching climates produce the clay mineral kaolinite, while confined conditions rich in Ca and Mg in climates with a pronounced dry season encourage the formation of the clay mineral smectite (montmorillonite).", "formats": [{"name": "GeoTIFF"}, {"name": "WWW:DOWNLOAD-1.0-http--download"}, {"name": "OGC:WMS-1.3.0-http-get-map"}, {"name": "WWW:LINK-1.0-http--link"}], "keywords": ["harmonized world soil database", "clay", "Topsoil CEC (clay)", "topsoil", "HiH_SOIL", "Tag_soil", "World"], "contacts": [{"name": "Ronald Vargas", "organization": "Food and Agriculture Organization of the UN", "position": null, "roles": ["pointOfContact"], "phones": [{"value": null}], "emails": [{"value": "GSP-Secretariat@fao.org"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}]}, "links": [{"href": "http://www.fao.org/docrep/018/aq361e/aq361e.pdf", "name": "Report: Harmonized World Soil Database Version 1.2 February 2012", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://data.apps.fao.org/map/gsrv/gsrv1/gsoc/wms?service=WMS&version=1.3.0&request=GetCapabilities", "name": "gsoc:T_CEC_CLAY", "description": "Topsoil CEC (CLAY)", "protocol": "OGC:WMS-1.3.0-http-get-map", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/geonetwork/gsoc/HWSD/T_CEC_CLAY.tif", "description": "Download - Topsoil CEC (CLAY) (TIFF)", "protocol": "WWW:LINK-1.0-http--link", "rel": null}, {"rel": "self", "type": "application/geo+json", "title": "2427214a-42dc-4862-b58a-00b73cbc7a6f", "name": "item", "description": "2427214a-42dc-4862-b58a-00b73cbc7a6f", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/2427214a-42dc-4862-b58a-00b73cbc7a6f"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date-time": "2022-11-03T15:07:00Z"}}, {"id": "28a900a9-28a2-415e-b08d-d5d3e89deb03", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-180.0, -90.0], [-180.0, 90.0], [180.0, 90.0], [180.0, -90.0], [-180.0, -90.0]]]}, "properties": {"themes": [{"concepts": [{"id": "geoscientificInformation"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}], "updated": "2022-11-03T15:00:53", "language": "eng", "title": "Subsoil pH (H2O)", "description": "This field gives the soil reaction of top- and subsoil. pH, measured in a soil-water solution, is a measure for the acidity and alkalinity of the soil. Five major pH classes are considered here that have specific agronomic significance: \n\npH < 4.5 Extremely acid soils include Acid Sulfate Soils (Mangrove soils, cat clays). Do not drain because by oxidation sulfuric acid will be produced and pH will drop lower still.\n\npH 4.5 \u2013 5.5 Very acid soils suffering often from Al toxicity. Some crops are tolerant for these conditions (Tea, Pineapple).\n\npH 5.5 \u20137.2 Acid to neutral soils: these are the best pH conditions for nutrient availability and suitable for most crops.\n\npH 7.2 \u2013 8.5 These pH values are indicative of carbonate rich soils. Depending on the form and concentration of calcium carbonate they may result in well structured soils which may however have depth limitations  when the calcium carbonate hardens in an impermeable layer and chemically forms less available carbonates affecting nutrient availability (Phosphorus, Iron).\n\npH > 8.5 Indicates alkaline soils often highly sodic (Na reaching toxic levels), badly structured (columnar structure) and easily dispersed surface clays.", "formats": [{"name": "GeoTIFF"}, {"name": "WWW:DOWNLOAD-1.0-http--download"}, {"name": "OGC:WMS-1.3.0-http-get-map"}, {"name": "WWW:LINK-1.0-http--link"}], "keywords": ["harmonized world soil database", "Subsoil pH (H2O)", "pH", "subsoil", "HiH_SOIL", "Tag_soil", "World"], "contacts": [{"name": "Ronald Vargas", "organization": "Food and Agriculture Organization of the UN", "position": null, "roles": ["pointOfContact"], "phones": [{"value": null}], "emails": [{"value": "GSP-Secretariat@fao.org"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}]}, "links": [{"href": "http://www.fao.org/docrep/018/aq361e/aq361e.pdf", "name": "Report: Harmonized World Soil Database Version 1.2 February 2012", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://data.apps.fao.org/map/gsrv/gsrv1/gsoc/wms?service=WMS&version=1.3.0&request=GetCapabilities", "name": "gsoc:S_PH_H2O", "description": "Subsoil pH (H2O)", "protocol": "OGC:WMS-1.3.0-http-get-map", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/geonetwork/gsoc/HWSD/S_PH_H2O.tif", "description": "Download - Subsoil pH (H2O) (TIFF)", "protocol": "WWW:LINK-1.0-http--link", "rel": null}, {"rel": "self", "type": "application/geo+json", "title": "28a900a9-28a2-415e-b08d-d5d3e89deb03", "name": "item", "description": "28a900a9-28a2-415e-b08d-d5d3e89deb03", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/28a900a9-28a2-415e-b08d-d5d3e89deb03"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date-time": "2022-11-03T15:00:53Z"}}, {"id": "252bfb57-76e0-4c68-920e-30f3e3f539e2", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-180.0, -90.0], [-180.0, 90.0], [180.0, 90.0], [180.0, -90.0], [-180.0, -90.0]]]}, "properties": {"themes": [{"concepts": [{"id": "environment"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}], "updated": "2022-06-02T07:41:24", "language": "eng", "title": "Organic soils (histosols) and drained organic soils", "description": "Organic soils and peatlands in particular have high influence on climate change and on the global carbon cycle. Indeed, the cultivation of organic soils entails drainage which causes significant release of CO2 in the atmosphere. Detailed information on regional and global emission trends of these soils is however scarce, due to the difficulty to map, measure and assess the complex dynamics of land, soil and water interactions that are required for a correct understanding of the degradation of organic soils caused by human activity. A geospatial analysis of drained organic soils and associated greenhouse gas emissions (GHG) were undertaken as part of the FAOSTAT global database of emissions for the Agriculture, Forestry and Other Land Use AFOLU sector. The database was first published in FAOSTAT in 2012 and it is updated yearly (FAO, 2016). Emissions estimates are derived from emission factors as reported in the 2006 IPCC guidelines and from activity data, namely the spatial distribution of organic soils and the spatial distribution of cropland on organic soils.  \nThis metadata accompanies the public distribution of the layers applied for this spatial analysis. The geographical distribution of organic soils was derived from the Harmonized World Soil Database (HWSD v 1.2)(Nachtergaele et al., 2012). The HWSD v 1.2 dataset was queried to extract all pixels with any share of histosols, either as dominant or secondary soil type and to derive a map of the area of organic soils. The total area covered by the histosols worldwide resulted to be approximately 330 million hectares, a figure consistent with previous estimates.  The land cover layer GLC2000 (Barthom\u00e9 and Belward, 2005) was the source for cropland distribution. \nMore information can be found in:\na) Tubiello F.N., Biancalani R., Salvatore M., Rossi S., Conchedda, G., 2016. A Worldwide Assessment of Greenhouse Gas Emissions from Drained Organic Soils. Sustainability 8(4), 371; http://dx.doi.org/10.3390/su8040371. \nb) Contribution of drained organic soils to GHG emissions in Towards climate-responsible peatlands management (Biancalani R., Salvatore M. and F.N. Tubiello), FAO, Rome, 2014. Page 12-14. \nReferences: \n1) Nachtergaele, F. O.; van Velthuizen, H.; Verelst, L.; Wiberg, D. Harmonized World Soil Database v 1.2; FAO/IIASA/ISRIC/ISS - CAS/JRC: FAO, Rome, Italy and IIASA, Laxenburg, Austria, 2012.\n2) Bartholom\u00e9, E.; Belward, A. S. GLC2000: a new approach to global land cover mapping from Earth observation data. Int. J. Remote Sens. 2005, 26 (9), 1959\u00e2\u20ac\u201c1977.\n3) FAO, 2016. FAOSTAT Emissions database.\nAcknowledgements: These spatial layers were produced as part of a large interdisciplinary activity across technical divisions of FAO, under the leadership of the Climate and Environment Division and the Statistics Division, within the project \u00e2\u20ac\u0153Monitoring and Assessment of GHG Emissions in Agriculture\u00e2\u20ac\u009d. Generous funding was provided by the Governments of Germany and Norway, GCP/GLO/286/GER and GCP/GLO/325/NOR.", "formats": [{"name": "GeoTIFF"}, {"name": "WWW:DOWNLOAD-1.0-http--download"}], "keywords": ["organic soils", "histosols", "drained histosols", "peatlands", "emission estimates", "Tag_ESS_ENV", "World"], "contacts": [{"name": "Riccardo Biancalani", "organization": "FAO", "position": "Natural Resources Officer", "roles": ["originator"], "phones": [{"value": "++39 0657054825"}], "emails": [{"value": "riccardo.biancalani@fao.org"}], "addresses": [{"deliveryPoint": ["Viale delle Terme di Caracalla"], "city": "Rome", "administrativeArea": null, "postalCode": "00153", "country": "Italy"}], "links": [{"href": null}]}, {"name": "Francesco Tubiello", "organization": "FAO", "position": "Senior Statistician", "roles": ["originator"], "phones": [{"value": "+39 06 570 52169"}], "emails": [{"value": "francesco.tubiello@fao.org"}], "addresses": [{"deliveryPoint": ["Viale delle Terme di Caracalla"], "city": "Rome", "administrativeArea": null, "postalCode": "00153", "country": "Italy"}], "links": [{"href": null}]}, {"name": "Giulia Conchedda", "organization": "FAO", "position": "Geospatial statistics analyst", "roles": ["distributor"], "phones": [{"value": "+39 0657052082"}], "emails": [{"value": "giulia.conchedda@fao.org"}], "addresses": [{"deliveryPoint": ["Viale delle Terme di Caracalla"], "city": "Rome", "administrativeArea": null, "postalCode": "00153", "country": "Italy"}], "links": [{"href": null}]}, {"name": "Mirella Salvatore", "organization": "FAO", "position": "Climate Change Officer", "roles": ["originator"], "phones": [{"value": "+39 0657055309"}], "emails": [{"value": "mirella.salvatore@fao.org"}], "addresses": [{"deliveryPoint": ["Viale delle Terme di Caracalla"], "city": "Rome", "administrativeArea": null, "postalCode": "00153", "country": "Italy"}], "links": [{"href": null}]}, {"organization": "FAO", "roles": ["creator"]}], "denominator": "3000000", "edition": "1st"}, "links": [{"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/252bfb57-76e0-4c68-920e-30f3e3f539e2/resources/histoshare.zip", "description": "The compressed file contains a GeoTiff (geographic projection - 0.00833333 cell resolution). Pixel values represent the share of organic soils (histosols)(percentage of pixel area).", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/252bfb57-76e0-4c68-920e-30f3e3f539e2/resources/share_hist_crop_grass.zip", "description": "The compressed folder contains 2 separate raster file in GeoTiff format (geographic projection - 0.00833333 cell resolution). 1) Pixel values represent the share of cultivated land in organic soils (histosols)(percentage of the pixel area); 2) Pixel values represent the share of the area of grassland cover in organic soil (histosols)(percentage of the pixel area).", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/252bfb57-76e0-4c68-920e-30f3e3f539e2/resources/Area_grid.zip", "description": "The compressed file contains a Geotiff raster image (geographic projection - 0.00833333 cell resolution). Pixel values represent the area of each pixel (values correspond to sqkm * 10,000. 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