{"type": "FeatureCollection", "features": [{"id": "10.1002/eap.1810", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:14:16Z", "type": "Journal Article", "created": "2018-11-26", "title": "Community Structure Dynamics And Carbon Stock Change Of Rehabilitated Mangrove Forests In Sulawesi, Indonesia", "description": "Abstract<p>To date, discourse associated with the potential application of \uffe2\uff80\uff9cblue carbon\uffe2\uff80\uff9d within real\uffe2\uff80\uff90world carbon markets has focused on blue carbon as a mitigation strategy in the context of avoided deforestation (e.g., REDD+). Here, we report structural dynamics and carbon storage gains from mangrove sites that have undergone rehabilitation to ascertain whether reforestation can complement conservation activities and warrant project investment. Replicated sites at two locations with contrasting geomorphic conditions were selected, Tiwoho and Tanakeke on the island of Sulawesi, Indonesia. These locations are representative of high (Tiwoho, deep muds and silty substrates) and low (Tanakeke, shallow, coralline sands) productivity mangrove ecosystems. They share a similar management history of clearing and conversion for aquaculture before restorative activities were undertaken using the practice of Ecological Mangrove Rehabilitation (EMR). Species diversity and mean biomass carbon storage gains after 10\uffc2\uffa0yr of regrowth from the high productivity sites of Tiwoho (49.2\uffc2\uffa0\uffc2\uffb1\uffc2\uffa09.1\uffc2\uffa0Mg\uffc2\uffa0C\uffc2\uffb7ha\uffe2\uff88\uff921\uffc2\uffb7yr\uffe2\uff88\uff921) are already almost of one\uffe2\uff80\uff90third of mean biomass stocks exhibited by mature forests (167.8\uffc2\uffa0\uffc2\uffb1\uffc2\uffa030.3\uffc2\uffa0Mg\uffc2\uffa0C\uffc2\uffb7ha\uffe2\uff88\uff921\uffc2\uffb7yr\uffe2\uff88\uff921). Tiwoho's EMR sites, on average, will have offset\uffc2\uffa0all biomass C that was initially lost through conversion within the next 11\uffc2\uffa0yr, a finding in marked contrast to the minimal carbon gains observed on the low productivity, low diversity, coral atoll EMR sites of Tanakeke (1.1\uffc2\uffa0\uffc2\uffb1\uffc2\uffa00.4 Mg\uffc2\uffa0C\uffc2\uffb7ha\uffe2\uff88\uff921\uffc2\uffb7yr\uffe2\uff88\uff921). These findings highlight the importance of geomorphic and biophysical site selection if the primary purpose of EMR is intended to maximize carbon sequestration gains.</p>", "keywords": ["0106 biological sciences", "Conservation of Natural Resources", "Indonesia", "13. Climate action", "Wetlands", "Biomass", "Forests", "15. Life on land", "01 natural sciences", "Carbon", "Ecosystem"]}, "links": [{"href": "https://doi.org/10.1002/eap.1810"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Ecological%20Applications", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1002/eap.1810", "name": "item", "description": "10.1002/eap.1810", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1002/eap.1810"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2018-11-26T00:00:00Z"}}, {"id": "10.1016/j.biortech.2017.06.076", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:15:55Z", "type": "Journal Article", "created": "2017-06-17", "title": "Trends in food waste valorization for the production of chemicals, materials and fuels: Case study South and Southeast Asia", "description": "Staggering amounts of food waste are being generated in Asia by means of agricultural processing, food transportation and storage, and human food consumption activities. This along with the recent sustainable development goals of food security, environmental protection, and energy efficiency are the key drivers for food waste valorization. The aim of this review is to provide an insight on the latest trends in food waste valorization in Asian countries such as India, Thailand, Singapore, Malaysia and Indonesia. Landfilling, incineration, and composting are the first-generation food waste processing technologies. The advancement of valorisation alternatives to tackle the food waste issue is the focus of this review. Furthermore, a series of examples of key food waste valorization schemes in this Asian region as case studies to demonstrate the advancement in bioconversions in these countries are described. Finally, important legislation aspects for food waste disposal in these Asian countries are also reported.", "keywords": ["2. Zero hunger", "Singapore", "Malaysia", "1. No poverty", "0211 other engineering and technologies", "India", "02 engineering and technology", "Thailand", "01 natural sciences", "Refuse Disposal", "12. Responsible consumption", "Food", "Indonesia", "13. Climate action", "11. Sustainability", "Humans", "Asia", " Southeastern", "0105 earth and related environmental sciences"]}, "links": [{"href": "https://doi.org/10.1016/j.biortech.2017.06.076"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Bioresource%20Technology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1016/j.biortech.2017.06.076", "name": "item", "description": "10.1016/j.biortech.2017.06.076", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1016/j.biortech.2017.06.076"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2018-01-01T00:00:00Z"}}, {"id": "10.1016/j.proci.2018.06.008", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:16:50Z", "type": "Journal Article", "created": "2018-06-22", "title": "Transient gas and particle emissions from smouldering combustion of peat", "description": "Abstract   Smouldering combustion of peat drives the largest fires on Earth, and their emissions play an important role in global carbon balance and regional air quality. Here we report a series of controlled laboratory experiments of peat fires. Peat samples of 100% moisture content in dry basis were burnt in an open-top reactor with dimensions of 20 \u00d7 20 \u00d7 10 cm. The diagnostics are a unique set of simultaneous measurements consisting of real-time mass loss, up to 20 different gas species concentration, size-fractioned particle mass (PM10, PM2.5 and PM1), temperature profile, and visual and infrared imaging. This comprehensive framework of measurements reveals that the evolution of the emissions varies in time with four observed stages (ignition, growth, steady and burn out) which are characterised by different combustion dynamics. Mass flux measurements show that CO2, CO, CH4 and NH3 are the four most predominant gas species emitted in the steady stage. Incorporating the mass loss rate, the transient emission factors (EFm) of both gas and particle species are calculated and reported here for the first time. Averaging the steady stage, the EFm of PM2.5 reached 23.12 g kg\u22121, which accounts for 87.2% of the total particle mass, and PM1 EFm was reported to be 15.04 g kg\u22121. The EFm of alkane species (CH4, C2H6, C3H8, C4H10) were found to peak within the ignition stage, whereas the EFm of CO2, CO and NH3 kept increasing during the steady stage. Because of these measurements, for the first time we were able to validate the EF calculated by assuming averaged values and a carbon balance, which is the preferred method used in remote sensing and atmospheric sciences. This work contributes to a better understanding of peat fire emissions and could help develop strategies tackling regional haze.", "keywords": ["Technology", "Engineering", " Chemical", "550", "Energy & Fuels", "Pollutions", "0904 Chemical Engineering", "Chemical", "Wildfire", "0902 Automotive Engineering", "01 natural sciences", "7. Clean energy", "INDONESIA", "BIOMASS", "Engineering", "Biomass", "FIRES", "0105 earth and related environmental sciences", "Science & Technology", "ROLES", "Peat", "Mechanical", "540", "Fire", "Engineering", " Mechanical", "13. Climate action", "Physical Sciences", "Thermodynamics", "0913 Mechanical Engineering"]}, "links": [{"href": "https://doi.org/10.1016/j.proci.2018.06.008"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Proceedings%20of%20the%20Combustion%20Institute", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1016/j.proci.2018.06.008", "name": "item", "description": "10.1016/j.proci.2018.06.008", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1016/j.proci.2018.06.008"}, {"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": "10.1016/j.scitotenv.2018.11.092", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:16:56Z", "type": "Journal Article", "created": "2018-11-10", "title": "Hydroperiod, Soil Moisture And Bioturbation Are Critical Drivers Of Greenhouse Gas Fluxes And Vary As A Function Of Landuse Change In Mangroves Of Sulawesi, Indonesia", "description": "The loss and degradation of mangroves can result in potentially significant sources of atmospheric greenhouse gas (GHG) emissions. For mangrove rehabilitation carbon projects, quantifying GHG emissions as forests regenerate is a key accounting requirement. The current study is one of the first attempts to systematically quantify emissions of carbon dioxide (CO2), nitrous oxide (N2O) and methane (CH4) from: 1) aquaculture ponds, 2) rehabilitating mangroves, and 3) intact mangrove sites and frame GHG flux within the context of landuse change. In-situ static chamber measurements were made at three contrasting locations in Sulawesi, Indonesia. The influence of key biophysical variables known to affect GHG flux was also assessed. Peak GHG flux was observed at rehabilitating (32.8\u202f\u00b1\u202f2.1\u202fMg\u202fCO2e\u202fha-1\u202fy-1) and intact, mature reference sites (43.8\u202f\u00b1\u202f4.5\u202fMg\u202fCO2e\u202fha-1\u202fy-1) and a dry, exposed disused aquaculture pond (30.6\u202f\u00b1\u202f1.9\u202fMg\u202fCO2e\u202fha-1\u202fy-1). Emissions were negligible at low productivity rehabilitating sites with high hydroperiod (mean 1.0\u202f\u00b1\u202f0.1\u202fMg\u202fCO2e\u202fha-1\u202fy-1) and an impounded, operational aquaculture pond (1.1\u202f\u00b1\u202f0.2\u202fMg\u202fCO2e\u202fha-1\u202fy-1). Heterogeneity in biophysical conditions and geomorphic position exerted a strong influence on GHG flux, with the longer hydroperiod and higher soil moisture content of seaward fringing mangroves correlated with decreased fluxes. A greater abundance of Mud lobster mounds and root structures in landward mangroves correlated to higher flux. When viewed across a landuse change continuum, our results suggest that the initial conversion of mangroves to aquaculture ponds releases extremely high rates of GHGs. Furthermore, the re-institution of hydrological regimes in dry, disused aquaculture ponds to facilitate tidal flushing is instrumental in rapidly mediating GHG flux, leading to a significant reduction in baseline emissions. This is an important consideration for forest carbon project proponents seeking to maximise creditable GHG emissions reductions and removals.", "keywords": ["Nitrous Oxide", "Aquaculture", "Carbon Dioxide", "Forests", "15. Life on land", "01 natural sciences", "12. Responsible consumption", "Greenhouse Gases", "Soil", "Indonesia", "13. Climate action", "11. Sustainability", "Water Movements", "Seasons", "14. Life underwater", "Ponds", "Methane", "Environmental Monitoring", "0105 earth and related environmental sciences"]}, "links": [{"href": "https://doi.org/10.1016/j.scitotenv.2018.11.092"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Science%20of%20The%20Total%20Environment", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1016/j.scitotenv.2018.11.092", "name": "item", "description": "10.1016/j.scitotenv.2018.11.092", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1016/j.scitotenv.2018.11.092"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2019-03-01T00:00:00Z"}}, {"id": "10.1029/2007jg000522", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:17:45Z", "type": "Journal Article", "created": "2008-04-01", "title": "Land Use Change Effects On Trace Gas Fluxes In The Forest Margins Of Central Sulawesi, Indonesia", "description": "<p>Land use changes and land use intensification are considered important processes contributing to the increasing concentrations of the greenhouse gases nitrous oxide (N2O) and methane (CH4) and of nitric oxide (NO), a precursor of ozone. Studies on the effects of land use changes and land use intensification on soil trace gas emissions were mostly conducted in Latin America and only very few in Asia. Here we present results from Central Sulawesi where profound changes in land use and cultivation practices take place: traditional agricultural practices like shifting cultivation and slash\uffe2\uff80\uff90and\uffe2\uff80\uff90burn agriculture are replaced by permanent cultivation systems and introduction of income\uffe2\uff80\uff90generating cash crops like cacao. Our results showed that N2O emissions were higher from cacao agroforestry (35 \uffc2\uffb1 10 \uffce\uffbcg N m\uffe2\uff88\uff922 h\uffe2\uff88\uff921) than maize (9 \uffc2\uffb1 2 \uffce\uffbcg N m\uffe2\uff88\uff922 h\uffe2\uff88\uff921), whereas intermediate rates were observed from secondary forests (25 \uffc2\uffb1 11 \uffce\uffbcg N m\uffe2\uff88\uff922 h\uffe2\uff88\uff921). NO emissions did not differ among land use systems, ranging from 12 \uffc2\uffb1 2 \uffce\uffbcg N m\uffe2\uff88\uff922 h\uffe2\uff88\uff921 for cacao agroforestry and secondary forest to 18 \uffc2\uffb1 2 \uffce\uffbcg N m\uffe2\uff88\uff922 h\uffe2\uff88\uff921 for maize. CH4 uptake was higher for maize (\uffe2\uff88\uff9230 \uffc2\uffb1 4 \uffce\uffbcg C m\uffe2\uff88\uff922 h\uffe2\uff88\uff921) than cacao agroforestry (\uffe2\uff88\uff9218 \uffc2\uffb1 2 \uffce\uffbcg C m\uffe2\uff88\uff922 h\uffe2\uff88\uff921) and intermediate rates were measured from secondary forests (\uffe2\uff88\uff9225 \uffc2\uffb1 4 \uffce\uffbcg C m\uffe2\uff88\uff922 h\uffe2\uff88\uff921). Combining these data with results from other studies in this area, we present chronosequence effects of land use change on trace gas emissions from natural forest, through maize cultivation, to cacao agroforestry (with or without fertilizer). Compared to the original forests, this typical land use change in the study area clearly led to higher N2O emissions and lower CH4 uptake with age of cacao agroforestry systems. We conclude that this common land use sequence in the area combined with the increasing use of fertilizer will strongly increase soil trace gas emissions. We suggest that the future hot spot regions of high N2O (and to a lesser extend NO) emissions in the tropics are those areas where climatic and edaphic conditions allow for intensive agriculture. This scenario is probably preferable over the alternative of agriculture extensification, which would imply a dramatic increase in deforestation rates with accompanying CO2 emissions.</p>", "keywords": ["2. Zero hunger", "fertilizers", "cacao", "13. Climate action", "deforestation", "land use", "agroforestry; cacao; deforestation; fertilizer; Indonesia; land use change", "0401 agriculture", " forestry", " and fisheries", "04 agricultural and veterinary sciences", "15. Life on land", "01 natural sciences", "agroforestry", "0105 earth and related environmental sciences"]}, "links": [{"href": "https://doi.org/10.1029/2007jg000522"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Journal%20of%20Geophysical%20Research%3A%20Biogeosciences", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1029/2007jg000522", "name": "item", "description": "10.1029/2007jg000522", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1029/2007jg000522"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2008-04-02T00:00:00Z"}}, {"id": "10.1029/2017JD027827", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:17:45Z", "type": "Journal Article", "created": "2018-04-26", "title": "Fine Particle Emissions From Tropical Peat Fires Decrease Rapidly With Time Since Ignition", "description": "Abstract<p>Southeast Asia experiences frequent fires in fuel\uffe2\uff80\uff90rich tropical peatlands, leading to extreme episodes of regional haze with high concentrations of fine particulate matter (PM2.5) impacting human health. In a study published recently, the first field measurements of PM2.5 emission factors for tropical peat fires showed larger emissions than from other fuel types. Here we report even higher PM2.5 emission factors, measured at newly ignited peat fires in Malaysia, suggesting that current estimates of fine particulate emissions from peat fires may be underestimated by a factor of 3 or more. In addition, we use both field and laboratory measurements of burning peat to provide the first mechanistic explanation for the high variability in PM2.5 emission factors, demonstrating that buildup of a surface ash layer causes the emissions of PM2.5 to decrease as the peat fire progresses. This finding implies that peat fires are more hazardous (in terms of aerosol emissions) when first ignited than when still burning many days later. Varying emission factors for PM2.5 also have implications for our ability to correctly model the climate and air quality impacts downwind of the peat fires. For modelers able to implement a time\uffe2\uff80\uff90varying emission factor, we recommend an emission factor for PM2.5 from newly ignited tropical peat fires of 58\uffc2\uffa0g of PM2.5 per kilogram of dry fuel consumed (g/kg), reducing exponentially at a rate of 9%/day. If the age of the fire is unknown or only a single value may be used, we recommend an average value of 24\uffc2\uffa0g/kg.</p>", "keywords": ["5", "550", "TRACE GASES", "PM2", "PM2.5", "Social and Behavioral Sciences", "01 natural sciences", "TRANSFORM INFRARED-SPECTROSCOPY", "INDONESIA", "CARBON", "SDG 3 - Good Health and Well-being", "11. Sustainability", "Medicine and Health Sciences", "Meteorology & Atmospheric Sciences", "AUSTRALIAN VEGETATION FIRES", "Research Articles", "0105 earth and related environmental sciences", "Science & Technology", "GE", "emissions", "AIR-POLLUTION", "15. Life on land", "FOREST", "FIELD-MEASUREMENTS", "DERIVATION", "13. Climate action", "Physical Sciences", "PREMATURE MORTALITY", "peat", "FoR 0401 (Atmospheric Sciences)", "FoR 0502 (Environmental Science and Management)", "fire"]}, "links": [{"href": "https://researchonline.ljmu.ac.uk/id/eprint/9303/1/Fine%20Particle%20Emissions%20From%20Tropical%20Peat%20Fires%20Decrease%20Rapidly%20With%20Time%20Since%20Ignition..pdf"}, {"href": "https://agupubs.onlinelibrary.wiley.com/doi/pdf/10.1029/2017JD027827"}, {"href": "https://doi.org/10.1029/2017JD027827"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Journal%20of%20Geophysical%20Research%3A%20Atmospheres", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1029/2017JD027827", "name": "item", "description": "10.1029/2017JD027827", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1029/2017JD027827"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2018-05-16T00:00:00Z"}}, {"id": "10.1080/03066150.2010.512460", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:18:22Z", "type": "Journal Article", "created": "2010-09-24", "title": "Processes Of Inclusion And Adverse Incorporation: Oil Palm And Agrarian Change In Sumatra, Indonesia", "description": "Changes in globalised agriculture raise critical questions as rapid agricultural development leads to widespread social and environmental transformation. With increased global demand for vegetable oils and biofuel, in Indonesia the area under oil palm has doubled over the last decade. This paper presents a case study of how micro-processes that are linked to wider dynamics shape oil palm related agrarian change in villages in Sumatra, Indonesia. It pursues related questions regarding the impact of agribusiness-driven agriculture, the fate of smallholders experiencing contemporary agrarian transition, and the impact of increased demand for vegetable oils and biofuels on agrarian structures in Sumatra. It argues that the paths of agrarian change are highly uneven and depend on how changing livelihood strategies are enabled or constrained by economic, social and political relations that vary over time and space. In contrast to simplifying narratives of inclusion/exclusion, it argues that outcomes depend on the terms under which smallholders engage with oil palm. Distinguishing between exogenous processes of agribusiness expansion and endogenous commodity market expansion, it finds each is associated with characteristic processes of change. It concludes that the way successive policy interventions have worked with the specific characteristics of oil palm have cumulatively shaped the space where agrarian change occurs in Sumatra.", "keywords": ["Crops", " Agricultural", "commodity market", "Economics", "eth Adverse incorporation", "smallholder", "0211 other engineering and technologies", "02 engineering and technology", "History", " 21st Century", "agricultural development", "strategic approach", "Social differentiation", "11. Sustainability", "agricultural policy", "Plant Oils", "crop", "demand analysis", "Social Change", "Asia", " Southeastern", "agriculture", "2. Zero hunger", "education", "article", "1. No poverty", "Agriculture", "Keywords: biofuel", "economics", "History", " 20th Century", "15. Life on land", "Southeast Asia", "socioeconomic impact", "Commodity markets", "agrarian change", "vegetable oil", "Indonesia", "13. Climate action", "Biofuels", "Oil palm", "biofuel"], "contacts": [{"organization": "McCarthy, John", "roles": ["creator"]}]}, "links": [{"href": "https://openresearch-repository.anu.edu.au/bitstream/1885/53926/5/processes_of_mccarthy_2010.pdf.jpg"}, {"href": "https://openresearch-repository.anu.edu.au/bitstream/1885/53926/7/01_McCarthy_Processes_of_inclusion_and_2010.pdf.jpg"}, {"href": "https://doi.org/10.1080/03066150.2010.512460"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/The%20Journal%20of%20Peasant%20Studies", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1080/03066150.2010.512460", "name": "item", "description": "10.1080/03066150.2010.512460", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1080/03066150.2010.512460"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2010-09-23T00:00:00Z"}}, {"id": "10.1098/rstb.1999.0524", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:18:38Z", "type": "Journal Article", "created": "2002-07-26", "title": "Effects Of Nitrogen And Phosphorus Fertilization In A Lowland Evergreen Rainforest", "description": "<p>A nutrient addition experiment was set up in August 1993 in a species\uffe2\uff80\uff93rich primary lowland dipterocarp forest in Barito Ulu, Central Kalimantan, Indonesia. The following treatments were applied: control, +N, +P and +NP. There were five blocks of four 50 m times 50 m plots with a separate treatment for each plot. Fine litterfall was measured on all the plots from l May 1994 for 12 months. Litterfall mass and phosphorus concentrations were significantly higher in all the fertilizer treatments compared with the controls. All trees (greater than or equal to 10 cm dbh) were measured in August 1993 and in August 1998, and there was no significant girth increment response to fertilization in dipterocarps or non\uffe2\uff80\uff93dipterocarps. Dipterocarps of the red meranti group showed a doubling of girth increment in the +NP treatment, however, the difference from the control fell short of significance.</p>", "keywords": ["0106 biological sciences", "Tropical Climate", "Indonesia", "Nitrogen", "Rain", "0401 agriculture", " forestry", " and fisheries", "Phosphorus", "04 agricultural and veterinary sciences", "15. Life on land", "Fertilizers", "01 natural sciences", "Ecosystem", "Trees"]}, "links": [{"href": "https://doi.org/10.1098/rstb.1999.0524"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Philosophical%20Transactions%20of%20the%20Royal%20Society%20of%20London.%20Series%20B%3A%20Biological%20Sciences", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1098/rstb.1999.0524", "name": "item", "description": "10.1098/rstb.1999.0524", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1098/rstb.1999.0524"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "1999-11-29T00:00:00Z"}}, {"id": "10.1111/gcb.12979", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:18:52Z", "type": "Journal Article", "created": "2015-05-16", "title": "Quantifying Above- And Belowground Biomass Carbon Loss With Forest Conversion In Tropical Lowlands Of Sumatra (Indonesia)", "description": "Abstract<p>Natural forests in South\uffe2\uff80\uff90East Asia have been extensively converted into other land\uffe2\uff80\uff90use systems in the past decades and still show high deforestation rates. Historically, lowland forests have been converted into rubber forests, but more recently, the dominant conversion is into oil palm plantations. While it is expected that the large\uffe2\uff80\uff90scale conversion has strong effects on the carbon cycle, detailed studies quantifying carbon pools and total net primary production (NPPtotal) in above\uffe2\uff80\uff90 and belowground tree biomass in land\uffe2\uff80\uff90use systems replacing rainforest (incl. oil palm plantations) are rare so far. We measured above\uffe2\uff80\uff90 and belowground carbon pools in tree biomass together with NPPtotal in natural old\uffe2\uff80\uff90growth forests, \uffe2\uff80\uff98jungle rubber\uffe2\uff80\uff99 agroforests under natural tree cover, and rubber and oil palm monocultures in Sumatra. In total, 32 stands (eight plot replicates per land\uffe2\uff80\uff90use system) were studied in two different regions. Total tree biomass in the natural forest (mean: 384\uffc2\uffa0Mg\uffc2\uffa0ha\uffe2\uff88\uff921) was more than two times higher than in jungle rubber stands (147\uffc2\uffa0Mg\uffc2\uffa0ha\uffe2\uff88\uff921) and &gt;four times higher than in monoculture rubber and oil palm plantations (78 and 50\uffc2\uffa0Mg\uffc2\uffa0ha\uffe2\uff88\uff921). NPPtotal was higher in the natural forest (24\uffc2\uffa0Mg\uffc2\uffa0ha\uffe2\uff88\uff921\uffc2\uffa0yr\uffe2\uff88\uff921) than in the rubber systems (20 and 15\uffc2\uffa0Mg\uffc2\uffa0ha\uffe2\uff88\uff921\uffc2\uffa0yr\uffe2\uff88\uff921), but was highest in the oil palm system (33\uffc2\uffa0Mg\uffc2\uffa0ha\uffe2\uff88\uff921\uffc2\uffa0yr\uffe2\uff88\uff921) due to very high fruit production (15\uffe2\uff80\uff9320\uffc2\uffa0Mg\uffc2\uffa0ha\uffe2\uff88\uff921\uffc2\uffa0yr\uffe2\uff88\uff921). NPPtotal was dominated in all systems by aboveground production, but belowground productivity was significantly higher in the natural forest and jungle rubber than in plantations. We conclude that conversion of natural lowland forest into different agricultural systems leads to a strong reduction not only in the biomass carbon pool (up to 166\uffc2\uffa0Mg\uffc2\uffa0C\uffc2\uffa0ha\uffe2\uff88\uff921) but also in carbon sequestration as carbon residence time (i.e. biomass\uffe2\uff80\uff90C:NPP\uffe2\uff80\uff90C) was 3\uffe2\uff80\uff9310 times higher in the natural forest than in rubber and oil palm plantations.</p>", "keywords": ["0106 biological sciences", "2. Zero hunger", "Carbon Sequestration", "Conservation of Natural Resources", "Rainforest", "Agriculture", "Arecaceae", "15. Life on land", "01 natural sciences", "sfb990_journalarticles", "Indonesia", "8. Economic growth", "Hevea", "Biomass"]}, "links": [{"href": "https://doi.org/10.1111/gcb.12979"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Global%20Change%20Biology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1111/gcb.12979", "name": "item", "description": "10.1111/gcb.12979", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1111/gcb.12979"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2015-08-13T00:00:00Z"}}, {"id": "10.1371/journal.pone.0149949", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:19:42Z", "type": "Journal Article", "created": "2016-02-29", "title": "Cacao Cultivation Under Diverse Shade Tree Cover Allows High Carbon Storage And Sequestration Without Yield Losses", "description": "One of the main drivers of tropical forest loss is their conversion to oil palm, soy or cacao plantations with low biodiversity and greatly reduced carbon storage. Southeast Asian cacao plantations are often established under shade tree cover, but are later converted to non-shaded monocultures to avoid resource competition. We compared three co-occurring cacao cultivation systems (3 replicate stands each) with different shade intensity (non-shaded monoculture, cacao with the legume Gliricidia sepium shade trees, and cacao with several shade tree species) in Sulawesi (Indonesia) with respect to above- and belowground biomass and productivity, and cacao bean yield. Total biomass C stocks (above- and belowground) increased fivefold from the monoculture to the multi-shade tree system (from 11 to 57 Mg ha-1), total net primary production rose twofold (from 9 to 18 Mg C ha-1 yr-1). This increase was associated with a 6fold increase in aboveground biomass, but only a 3.5fold increase in root biomass, indicating a clear shift in C allocation to aboveground tree organs with increasing shade for both cacao and shade trees. Despite a canopy cover increase from 50 to 93%, cacao bean yield remained invariant across the systems (variation: 1.1-1.2 Mg C ha-1 yr-1). The monocultures had a twice as rapid leaf turnover suggesting that shading reduces the exposure of cacao to atmospheric drought, probably resulting in greater leaf longevity. Thus, contrary to general belief, cacao bean yield does not necessarily decrease under shading which seems to reduce physical stress. If planned properly, cacao plantations under a shade tree cover allow combining high yield with benefits for carbon sequestration and storage, production system stability under stress, and higher levels of animal and plant diversity.", "keywords": ["0301 basic medicine", "Carbon Sequestration", "Science", "Forests", "Plant Roots", "Trees", "sfb990_journalarticles", "Soil", "03 medical and health sciences", "Biomass", "2. Zero hunger", "Cacao", "Principal Component Analysis", "Geography", "Q", "R", "Agriculture", "Biodiversity", "04 agricultural and veterinary sciences", "15. Life on land", "Carbon", "Indonesia", "Linear Models", "Medicine", "0401 agriculture", " forestry", " and fisheries", "Plant Shoots", "Research Article"]}, "links": [{"href": "https://doi.org/10.1371/journal.pone.0149949"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/PLOS%20ONE", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1371/journal.pone.0149949", "name": "item", "description": "10.1371/journal.pone.0149949", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1371/journal.pone.0149949"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2016-02-29T00:00:00Z"}}, {"id": "10.5281/zenodo.3572061", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-08T16:23:27Z", "type": "Dataset", "title": "Field-lab data and analyses results West Kalimantan, Indonesia", "description": "Open AccessField data included in this compressed folder were collected over an area of approximately 23,500 hectares in West Kalimantan, Indonesia. The folder includes Excel and txt files with the following contents: field measurements of the peat thickness at 63 coring sites, laboratory analyses results of the samples collected in the field, field and lab measurements of electrical conductivity. Moreover, there is a file containing all the measurements of peat thickness and soil elevation extracted from the figures contained in previous studies. Finally, the folder also includes the results obtained from the inversion of the Airborne Electromagntic (AEM) data collected with the SkyTEM instrument over the study site, and specifically the resistivity of the soil layers obtained from the inversion and the peat thickness corresponding to the 45 Ohmm threshold. The folder also includes the Python codes used for the statistical analyses explained in the paper.", "keywords": ["13. Climate action", "15. Life on land", "Organic carbon content", " Airborne Electromagnetics", " CRESCENDO", " Marie Sk\u0142odowska-Curie action", " peatlands", " peat thickness", " peat volume", " Indonesia", " SkyTEM", " carbon pool"], "contacts": [{"organization": "Sonia, Silvestri, Knight Rosemary, Viezzoli Andrea, Richardson Curtis, Anshari Gusti, Dewar Noah, Flanagan Neal, Comas Xavier,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.5281/zenodo.3572061"}, {"rel": "self", "type": "application/geo+json", "title": "10.5281/zenodo.3572061", "name": "item", "description": "10.5281/zenodo.3572061", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5281/zenodo.3572061"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2019-12-12T00:00:00Z"}}, {"id": "31769934-038c-4873-ab14-4b6b66531103", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-157.9, -38.8], [-157.9, 29.1], [175.9, 29.1], [175.9, -38.8], [-157.9, -38.8]]]}, "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": "Australia"}, {"id": "Bangladesh"}, {"id": "Belize"}, {"id": "Benin"}, {"id": "Brazil"}, {"id": "Cameroon"}, {"id": "China"}, {"id": "Colombia"}, {"id": "Costa Rica"}, {"id": "Dominican Republic"}, {"id": "Ecuador"}, {"id": "Egypt"}, {"id": "El Salvador"}, {"id": "French Guiana"}, {"id": "Guadeloupe"}, {"id": "Honduras"}, {"id": "Hong Kong"}, {"id": "India"}, {"id": "Indonesia"}, {"id": "Madagascar"}, {"id": "Malaysia"}, {"id": "Mexico"}, {"id": "Micronesia"}, {"id": "Mozambique"}, {"id": "New Zealand"}, {"id": "Nigeria"}, {"id": "Palau"}, {"id": "Panama"}, {"id": "Philippines"}, {"id": "Saudi Arabia"}, {"id": "Singapore"}, {"id": "South Africa"}, {"id": "Sri Lanka"}, {"id": "Taiwan"}, {"id": "Thailand"}, {"id": "United States"}, {"id": "Vietnam"}], "scheme": "Region"}], "updated": "2024-11-27T10:08:58", "type": "Dataset", "language": "eng", "title": "Global mangrove soil carbon: dataset and spatial maps", "description": "Model outputs were updated on Dec 20, 2017. This project used a machine learning data-driven model to predict the distribution of soil carbon under mangrove forests globally. Specifically this dataset contains: 1) a compilation of georeferenced and harmonized soil profile data under mangroves compiled from literature, reports and unpublished contributions 2) global mosaics of soil carbon stocks to 1m and 2m depths produced at 100 m resolution 3) tiled predictions of soil carbon stocks produced at 30 m resolution 4) shape file containing the tiling system 5) shape file containing country boundaries used for calculating national level statistics.\nFor detailed methodologies, please see the scientific paper (https://doi.org/10.1088/1748-9326/aabe1c).", "formats": [{"name": "zip"}, {"name": "WWW:LINK-1.0-http--related"}], "keywords": ["carbon", "soil profiles", "Soil science", "Australia", "Bangladesh", "Belize", "Benin", "Brazil", "Cameroon", "China", "Colombia", "Costa Rica", "Dominican Republic", "Ecuador", "Egypt", "El Salvador", "French Guiana", "Guadeloupe", "Honduras", "Hong Kong", "India", "Indonesia", "Madagascar", "Malaysia", "Mexico", "Micronesia", "Mozambique", "New Zealand", "Nigeria", "Palau", "Panama", "Philippines", "Saudi Arabia", "Singapore", "South Africa", "Sri Lanka", "Taiwan", "Thailand", "United States", "Vietnam"], "contacts": [{"name": "Jonathan Sanderman", "organization": "Woods Hole Research Centre", "position": "Associate scientist", "roles": ["pointOfContact"], "phones": [{"value": null}], "emails": [{"value": "jsanderman@whrc.org"}], "addresses": [{"deliveryPoint": [null], "city": "Falmouth, Massachusetts", "administrativeArea": null, "postalCode": "MA 02540", "country": "United States of America"}], "links": [{"href": null}]}, {"name": "Tom Hengl", "organization": "ISRIC - World Soil Information", "position": "Former staff", "roles": ["Author"], "phones": [{"value": null}], "emails": [{"value": "None"}], "addresses": [{"deliveryPoint": ["PO Box 353"], "city": "Wageningen", "administrativeArea": null, "postalCode": "6700AJ", "country": "Netherlands"}], "links": [{"href": null}]}], "distancevalue": "30", "distanceuom": "m"}, "links": [{"href": "https://dataverse.harvard.edu/dataset.xhtml?persistentId=doi:10.7910/DVN/OCYUIT", "name": "Project webpage", "protocol": "WWW:LINK-1.0-http--related", "rel": "information"}, {"href": "https://doi.org/10.1088/1748-9326/aabe1c", "name": "Scientific paper", "protocol": "WWW:LINK-1.0-http--related", "rel": "information"}, {"href": "https://files.isric.org/public/thumbnails/other/WD-Mangroves.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": "31769934-038c-4873-ab14-4b6b66531103", "name": "item", "description": "31769934-038c-4873-ab14-4b6b66531103", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/31769934-038c-4873-ab14-4b6b66531103"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"interval": ["1969-01-01T00:00:00Z", "2015-09-01T00:00:00Z"]}}, {"id": "09c0e3db-6200-4f13-808c-b74f3bbe00ba", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[95.21, -10.92], [95.21, 5.91], [141.0, 5.91], [141.0, -10.92], [95.21, -10.92]]]}, "properties": {"themes": [{"concepts": [{"id": "farming"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}], "updated": "2019-11-22T14:42:18", "language": "eng", "title": "Land capability maps (Maluku and Irian Jaya - 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