{"type": "FeatureCollection", "features": [{"id": "10.1111/j.1475-2743.2003.tb00297.x", "type": "Feature", "geometry": null, "properties": {"updated": "2026-05-30T16:19:42Z", "type": "Journal Article", "created": "2010-08-05", "title": "Effects Of Organic Versus Conventional Arable Farming On Soil Structure And Organic Matter Dynamics In A Marine Loam In The Netherlands", "description": "<p>Abstract.  We compared the effects of conventional and organic arable farming on soil organic matter (SOM) content, soil structure, aggregate stability and C and N mineralization, which are considered important factors in defining sustainable land management. Within one soil series, three different farming systems were selected, including a conventional and an organic arable system and permanent pasture without tillage. The old pasture represents optimal conditions in terms of soil structure and organic matter inputs and is characterized by high earthworm activity. More than 70 years of different management has caused significant differences in soil properties. SOM content, mineralization, earthworm activity and water\uffe2\uff80\uff90stable aggregation decreased as a result of tillage and arable cropping when compared with pasture, but were significantly greater under organic farming than under conventional farming. Total SOM contents between 0 and 20 cm depth amounted to 15, 24 and 46 g kg\uffe2\uff88\uff921 for the conventional arable, organic arable and permanent pasture fields, respectively. Although less sensitive to slaking than the conventionally managed field, the soil under organic farming was susceptible to compaction when high pressures were exerted on the soil under wet conditions. The beneficial effects of organic farming are generally associated with soil biochemical properties, but soil physical aspects should also be considered. Depending on soil type and climate, organic farmers need to be careful not to destroy the soil structure, so that they can enjoy maximum advantage from their organic farming systems.</p>", "keywords": ["2. Zero hunger", "aggregation", "netherlands", "04 agricultural and veterinary sciences", "15. Life on land", "arable farming", "fertilizer", "loam soils", "populations", "6. Clean water", "land", "cultivation", "13. 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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 ZALF Datenerfassung's research activities.\" Although every care has been taken in preparing and testing the data, the ZALF Datenerfassung and the BonaRes Data Centre cannot guarantee that the data are correct; neither does the ZALF Datenerfassung 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. 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The \u201cINPLAMINT.Nutrient.Status.Field.Experiment.Chronosequence\u201d data were created as part of BonaRes Module A-Project INPLAMINT research activities.\u201d Although every care has been taken in preparing and testing the data, BonaRes Module A-Project INPLAMINT and BonaRes Data Centre cannot guarantee that the data are correct; neither does BonaRes Module A-Project INPLAMINT and 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 INPLAMINT and BonaRes Data Centre will not be responsible for any direct or indirect use which might be made of the data. The access to this data is restricted during embargo time. 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Concepts, version 2.4"}], "license": "CC BY", "rights": "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: \u201cData re-used from the BonaRes Data Centre www.bonares.de. The \u201cINPLAMINT.Nutrient.Status.Field.Experiment.Chronosequence\u201d data were created as part of BonaRes Module A-Project INPLAMINT research activities.\u201d Although every care has been taken in preparing and testing the data, BonaRes Module A-Project INPLAMINT and BonaRes Data Centre cannot guarantee that the data are correct; neither does BonaRes Module A-Project INPLAMINT and 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 INPLAMINT and BonaRes Data Centre will not be responsible for any direct or indirect use which might be made of the data. The access to this data is restricted during embargo time. If prior access is requested, contact the data owner/author.", "updated": "2020-12-02", "type": "Dataset", "created": "2017-09-19", "language": "ger", "title": "INPLAMINT.Nutrient.Status.Field.Experiment.Chronosequence", "description": "Over 100 km2 of agricultural soils have been restored after open-cast lignite mining in the area between Aachen, Cologne and D\u00fcsseldorf (Germany). The applied restoration technique leads to a massive soil disturbance in three ways: soil structure is lost by excavation and mixing; topsoil is diluted with subsoil and loess parent material, raising pH and lowering organic carbon content; soil biology is reduced. This data set contains physical and chemical soil parameters along a pseudo-chronosequence of recultivated soils after open-cast mining and one naturally grown Luvisol (original soil), which never was influenced by mining. Soils between 2016 and 2011 were managed by farmers of the mining company RWE AG (Germany). Soils between 2006 and 1964, as well as the original soil, were managed by local farmers. Farmers of conventional agricultural management followed the guidelines and recommendations of the German Federal Soil Protection Act. Farmers used official agricultural services like the chamber of agriculture to comply with the German fertilization regulation and good professional practice of plant protection. Most parameters were determined on basis of standardized VDLUFA and DIN guidelines. Soil water content ranged between 20 and 24% soil dry weight in March and June, except the freshly deposed soil substrate of 2016. Soil texture was generally silty loam. pH measured in CaCl2 ranged between 7.4 and 7.9, except in the original Luvisol with pH of 6.4. Only recultivated soils contained inorganic C in form of CaCO3. In March, original soil contained 1.6 mg NH4-N kg. All other recultivated soils ranged between 0.06 and 0.8 mg NH4-N kg. In June, all soils ranged at NH4-N concentrations of 0.02 to 0.2 mg kg. In March, NO3-N ranged between 23 and 40 mg kg in soils deposed in 2012, 2011, 2006, and in the original soil. All other soils ranged between 0.1-4.5 mg NO3-N kg. In June, NO3-N ranged at a level of 0.1 to 7 mg N kg-1 in all soils. Smin concentrations in the original soil were between 7 and 3 mg S kg-1 in both sampling seasons (March and June), respectively. All recultivated soils contained 1 and 12 mg S kg-1 in March. In June, the Smin concentrations ranged between 1 and 6 mg S kg-1 in recultivated soils. A clear trend for plant-accessible P(CAL) occurred in the following order: freshly deposed (12 mg kg-1)  younger (10 to 23 mg kg-1) to older recultivation soils (49-106 mg kg) \u2264 original soil (101 mg kg, mean of both seasons).  During both sampling seasons, plant-accessible K(CAL) was lower in recultivated soil between year 2016 and 2011, ranging between 33 to 60 mg K kg. All other soils, including the original soil, had higher K(CAL) concentrations, ranging between 88 and 188 mg K kg. Original soil had the largest plant-accessible Mg concentrations with 132 and 150 mg kg in March and June, respectively. In March, only the soil recultivated in 2006 showed a similarly large concentration of plant-accessible Mg with 122 mg kg-1. In all other cases, accessible Mg ranged between 56 and 108 mg Mg kg-1. Organic carbon content showed a clear gradient in the following order: freshly deposed soil substrate of 2016 (0.3% Corg)  younger (0.4%) to older recultivation soils (0.8%)  original soil (1.4%). Total nitrogen content showed the following gradient: freshly (0.05% Nt)  younger (0.06%) to older recultivation soils (0.11%)  original soil (0.14%). Total calcium, magnesium, boron, and CaCO3 showed a significant negative correlation with age of the soil substrate. Total K and Fe tended to increase with soil substrate age. Manganese, phosphorus, and sulfur were significantly positive correlated with soil substrate age. Related publications: Weiterf\u00fchrende Publikation: (1) Reichel R., H\u00e4nsch M., Br\u00fcggemann N. (2017). Indication of rapid soil food web recovery by nematode-derived indices in restored agricultural soil after open-cast lignite mining. Soil Biology and Biochemistry, 115, 261-264. DOI: 10.1016/j.soilbio.2017.08.020; (2) Roy J., Reichel R., Br\u00fcggemann N., Hempel S., Rillig M. (2017). Succession of arbuscular mycorrhizal fungi along a 52-years agricultural recultivation chronosequence. FEMS Microbiology Ecology. DOI: 1093/femsec/fix102", "formats": [{"name": "CSV"}], "keywords": ["Soil", "Mineral nutrients", "Lignite", "Land resources", "time study", "arable farming", "Boden", "Bodenuntersuchung", "Rekultivierung", "Braunkohlenbergbau", "Tagebau"], "contacts": [{"name": "Reichel, R\u00fcdiger", "organization": "IBG-3, Forschungszentrum J\u00fclich GmbH", "position": null, "roles": ["author"], "phones": [{"value": null}], "emails": [{"value": "ru.reichel@fz-juelich.de"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": {"url": "https://orcid.org/", "protocol": null, "protocol_url": "", "name": "orcid", "name_url": "", "description": "0000-0002-4950-5494", "description_url": "", "applicationprofile": null, "applicationprofile_url": "", "function": null}}]}, {"name": "Brueggemann, Nicolas", "organization": "IBG-3, Forschungszentrum J\u00fclich GmbH", "position": null, "roles": ["projectLeader"], "phones": [{"value": null}], "emails": [{"value": "n.brueggemann@fz-juelich.de"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": {"url": "https://orcid.org/", "protocol": null, "protocol_url": "", "name": "orcid", "name_url": "", "description": "0000-0003-3851-2418", "description_url": "", "applicationprofile": null, "applicationprofile_url": "", "function": null}}]}, {"name": "BonaRes Data Centre", "organization": "Leibniz Centre for Agricultural Landscape Research (ZALF)", "position": "Research Platform 'Data'  - WG Geodata", "roles": ["publisher"], "phones": [{"value": "+49 33432 82 171"}], "emails": [{"value": "bonares-datenzentrum@zalf.de"}], "addresses": [{"deliveryPoint": ["Eberswalder Strasse 84"], "city": "M\u00fcncheberg", "administrativeArea": "Brandenburg", "postalCode": "15374", "country": "Germany"}], "links": [{"href": null}]}, {"organization": "IBG-3, Forschungszentrum J\u00fclich GmbH", "roles": ["contributor"]}]}, "links": [{"href": "https://maps.bonares.de/mapapps/resources/apps/bonares/index.html?lang=en&doi=72ca6e98-5aab-4884-bf1b-56931482eb94", "rel": "download"}, {"href": "https://metadata.bonares.de:443/smartEditor/preview/Inplamint_2_choronosequence_ID5002_5005.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": "72ca6e98-5aab-4884-bf1b-56931482eb94", "name": "item", "description": "72ca6e98-5aab-4884-bf1b-56931482eb94", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/72ca6e98-5aab-4884-bf1b-56931482eb94"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2020-12-02T00:00:00Z"}}, {"id": "9875f0db-27c1-4681-8469-13f6a2f4fec0", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[10.02, 47.4], [10.02, 54.81], [13.79, 54.81], [13.79, 47.4], [10.02, 47.4]]]}, "properties": {"themes": [{"concepts": [{"id": "farming"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}, {"concepts": [{"id": "earthworms"}, {"id": "subsoil"}, {"id": "phosphorus"}], "scheme": "AGROVOC Multilingual agricultural thesaurus"}, {"concepts": [{"id": "arable farming"}, {"id": "soil"}], "scheme": "GEMET - Concepts, version 2.4"}, {"concepts": [{"id": "Boden"}], "scheme": "GEMET - INSPIRE themes, version 1.0"}, {"concepts": [{"id": "opendata"}], "scheme": "Individual"}], "license": "CC BY", "rights": "Restrictions applied to assure the protection of privacy or intellectual property, and any special restrictions or limitations or warnings on using the resource or metadata.(e.g. 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 re-used from the BonaRes Data Centre www.bonares.de. This data were created as part of BonaRes Module A-Project - InnoSoilPhos's research activities.\"Although every care has been taken in preparing and testing the data, BonaRes Module A-Project - InnoSoilPhos and BonaRes Data Centre cannot guarantee that the data are correct; neither does BonaRes Module A-Project - InnoSoilPhos and 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. The access to this data is restricted during embargo time. If prior access is requested, contact the data owner / author.", "updated": "2023-03-10", "type": "Dataset", "created": "2018-05-10", "language": "eng", "title": "Impact of biopores on P mobilization on arable land", "description": "Earthworms promotes the microbial activity by bioturbation (aeration and nutrient input). Above all anecic earthworms connect with its vertical tubes top soils and sub soils and affecting thus the nutrient transfer in the soil actively. In the following study, the extent of P mobilization activity in soils was investigated on two margin of fields in Rostock and Freising. Margin of fields were used as model since it shows a particularly high colonization density of earthworms. On both test sites the drilosphere soil (surface of biopores) showed in comparison to the control (soil without visible biopores) partially and slightly higher activities of hydrolytic enzymes (acid/ alkaline phosphomonoesterases, \u03b2 glucosidase, phosphodiesterase) and higher concentrations of plant available (double lactacte extract) phosphorus. The impact of location clearly surpassed the influence of biopores on P mobilization. In the subsoil was a partially increased P mobilization and a minor increased P availability present while in the top soil proved almost no significant effects on the P cycle. That leads to the assumption of the dominance of other control values.", "formats": [{"name": "CSV"}], "keywords": ["earthworms", "subsoil", "phosphorus", "arable farming", "soil", "Boden", "opendata"], "contacts": [{"name": "Nora Vitow", "organization": "University of Rostock", "position": "Researcher", "roles": ["author"], "phones": [{"value": "0381/498 3134"}], "emails": [{"value": "nora.vitow@uni-rostock.de"}], "addresses": [{"deliveryPoint": [null], "city": "Rostock", "administrativeArea": "Mecklenburg-Vorpommern", "postalCode": "18059", "country": "Germany"}], "links": [{"href": null}]}, {"name": "Peter Leinweber", "organization": "University of Rostock", "position": "Head of Soil Science", "roles": ["projectLeader"], "phones": [{"value": "0381/498 3120"}], "emails": [{"value": "peter.leinweber@uni-rostock.de"}], "addresses": [{"deliveryPoint": [null], "city": "Rostock", "administrativeArea": "Mecklenburg-Vorpommern", "postalCode": "18059", "country": "Germany"}], "links": [{"href": null}]}, {"name": "BonaRes Data Centre", "organization": "Leibniz Centre for Agricultural Landscape Research (ZALF)", "position": "Research Platform 'Data Analysis & Simulation' - WG Geodata", "roles": ["publisher"], "phones": [{"value": "+49 33432 82 171"}], "emails": [{"value": "bonares-datenzentrum@zalf.de"}], "addresses": [{"deliveryPoint": ["Eberswalder Strasse 84"], "city": "M\u00fcncheberg", "administrativeArea": "Brandenburg", "postalCode": "15374", "country": "Germany"}], "links": [{"href": null}]}, {"name": "Christel Baum", "organization": "University of Rostock", "position": "PhD", "roles": ["workPackageLeader"], "phones": [{"value": "0381/498 3100"}], "emails": [{"value": "christel.baum@uni-rotstock.de"}], "addresses": [{"deliveryPoint": [null], "city": "Rostock", "administrativeArea": "Mecklenburg-Vorpommern", "postalCode": "18059", "country": "Germany"}], "links": [{"href": null}]}, {"organization": "University of Rostock", "roles": ["contributor"]}]}, "links": [{"href": "https://maps.bonares.de/mapapps/resources/apps/bonares/index.html?lang=en&mid=9875f0db-27c1-4681-8469-13f6a2f4fec0", "rel": "download"}, {"rel": "self", "type": "application/geo+json", "title": "9875f0db-27c1-4681-8469-13f6a2f4fec0", "name": "item", "description": "9875f0db-27c1-4681-8469-13f6a2f4fec0", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/9875f0db-27c1-4681-8469-13f6a2f4fec0"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-03-10T00:00:00Z"}}, {"id": "9d477f07-9206-425d-bc3f-7d9c18b5f0a2", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[6.19, 51.07], [6.19, 51.3], [6.48, 51.3], [6.48, 51.07], [6.19, 51.07]]]}, "properties": {"themes": [{"concepts": [{"id": "environment"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}, {"concepts": [{"id": "Soil"}, {"id": "Mineral nutrients"}, {"id": "Lignite"}, {"id": "Land resources"}, {"id": "time study"}, {"id": "arable farming"}], "scheme": "AGROVOC Multilingual agricultural thesaurus"}, {"concepts": [{"id": "Boden"}, {"id": "Bodenuntersuchung"}, {"id": "Rekultivierung"}, {"id": "Braunkohlenbergbau"}, {"id": "Tagebau"}, {"id": "Bakteriengemeinschaft"}], "scheme": "GEMET - Concepts, version 2.4"}, {"concepts": [{"id": "Boden"}, {"id": "inspireidentifiziert"}], "scheme": "GEMET - INSPIRE themes, version 1.0"}, {"concepts": [{"id": "opendata"}], "scheme": "Individual"}], "license": "CC BY", "rights": "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: \u201cData re-used from the BonaRes Data Centre www.bonares.de. The \u201cINPLAMINT.Nutrient.Status.Field.Experiment.Chronosequence\u201d data were created as part of BonaRes Module A-Project INPLAMINT research activities.\u201d Although every care has been taken in preparing and testing the data, BonaRes Module A-Project INPLAMINT and BonaRes Data Centre cannot guarantee that the data are correct; neither does BonaRes Module A-Project INPLAMINT and 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 INPLAMINT and BonaRes Data Centre will not be responsible for any direct or indirect use which might be made of the data. The access to this data is restricted during embargo time. If prior access is requested, contact the data owner/author.", "updated": "2021-03-22", "type": "Dataset", "created": "2019-03-13", "language": "eng", "title": "Soil Bacterial Community Chronosequence J\u00fclich", "description": "Over 100 km\u00b2 of agricultural soils have been restored after open-cast lignite mining in the area between Aachen, Cologne and D\u00fcsseldorf (Germany). The applied restoration technique leads to a massive soil disturbance in three ways: soil structure is lost by excavation and mixing; topsoil is diluted with subsoil and loess parent material, raising pH and lowering organic carbon content; soil biology is reduced. This data set contains data on the bacterial community composition along a pseudo-chronosequence of recultivated soils after open-cast mining and one naturally grown Luvisol (original soil), which was never influenced by mining. Soils between 2016 and 2011 were managed by farmers of the mining company RWE AG (Germany). Soils between 2006 and 1964, as well as the original soil, were managed by local farmers. Farmers of conventional agricultural management followed the guidelines and recommendations of the German Federal Soil Protection Act. Farmers used official agricultural services like the chamber of agriculture to comply with the German fertilization regulation and good professional practice of plant protection. Soil parameters were determined on basis of standardized VDLUFA and DIN guidelines and those data are available on the BonaRes Data Server (INPLAMINT.Nutrient.Status.Field.Experiment.Chronosequence: https://maps.bonares.de/mapapps/resources/apps/bonares/index.html?lang=en&doi=72ca6e98-5aab-4884-bf1b-56931482eb94). Soil water content ranged between 20 and 24% soil dry weight in March and June, except the freshly deposed soil substrate of 2016. Soil texture was generally silty loam. pH measured in CaCl2 ranged between 7.4 and 7.9, except in the original Luvisol with pH of 6.4. Only recultivated soils contained inorganic C in form of CaCO3. The bacterial abundance was determined using quantitative real-time PCR of the bacterial 16S rRNA gene (FP: 5\u2032-GGTAGTCYAYGCMSTAAACG-3\u2032, RP: 5\u2032-GACARCCATGCASCACCTG-3\u2032). The bacterial community structure of 10 sites with 4 pseudo-replicates was characterised by amplicon sequencing of the V1-V2 region of the bacterial 16S rRNA gene using primers 27F (5\u2032-AGAGTTTGATCMTGGC-3\u2032) and 357R (5'-CTGCTGCCTYCCGTA-3'). Results show that bacterial abundance as well as alpha-diversity quickly recovers to levels of the original soil. However, the bacterial community structure is strongly changed even 52 years after site restoration. Furthermore, it was observed that the bacterial community structure shifts depending on land use changes and weathering of the initial soil substrate happening during the restoration procedures. Related publications: (1) Reichel R., H\u00e4nsch M., Br\u00fcggemann N. (2017). Indication of rapid soil food web recovery by nematode-derived indices in restored agricultural soil after open-cast lignite mining. Soil Biology and Biochemistry, 115, 261-264. DOI: 10.1016/j.soilbio.2017.08.020; (2) Roy J., Reichel R., Br\u00fcggemann N., Hempel S., Rillig M. (2017). Succession of arbuscular mycorrhizal fungi along a 52-years agricultural recultivation chronosequence. FEMS Microbiology Ecology. DOI: 1093/femsec/fix102 (3) Schmid C., Reichel R., Schr\u00f6der P., Br\u00fcggemann N., Schloter M. (in preparation) Dynamic of bacterial communities during 52 years of agricultural restoration of an opencast lignite mine.\nAdditional information on the data set is available in the supplement.", "formats": [{"name": "Excel"}], "keywords": ["Soil", "Mineral nutrients", "Lignite", "Land resources", "time study", "arable farming", "Boden", "Bodenuntersuchung", "Rekultivierung", "Braunkohlenbergbau", "Tagebau", "Bakteriengemeinschaft", "Boden", "inspireidentifiziert", "opendata"], "contacts": [{"name": "Schmid, Christoph", "organization": "COMI, Helmholtz Zentrum M\u00fcnchen GmbH", "position": null, "roles": ["author"], "phones": [{"value": null}], "emails": [{"value": "christoph.schmid@helmholtz-muenchen.de"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}, {"name": "Schr\u00f6der, Peter", "organization": "COMI, Helmholtz Zentrum M\u00fcnchen GmbH", "position": null, "roles": ["projectMember"], "phones": [{"value": null}], "emails": [{"value": "peter.schroeder@helmholtz-muenchen.de"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}, {"name": "BonaRes Data Centre", "organization": "Leibniz Centre for Agricultural Landscape Research (ZALF)", "position": "Research Platform 'Data'  - WG Geodata", "roles": ["publisher"], "phones": [{"value": "+49 33432 82 171"}], "emails": [{"value": "bonares-datenzentrum@zalf.de"}], "addresses": [{"deliveryPoint": ["Eberswalder Strasse 84"], "city": "M\u00fcncheberg", "administrativeArea": "Brandenburg", "postalCode": "15374", "country": "Germany"}], "links": [{"href": null}]}, {"name": "Schloter, Michael", "organization": "COMI, Helmholtz Zentrum M\u00fcnchen GmbH", "position": null, "roles": ["projectLeader"], "phones": [{"value": null}], "emails": [{"value": "schloter@helmholtz-muenchen.de"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}, {"organization": "COMI, Helmholtz Zentrum M\u00fcnchen GmbH", "roles": ["contributor"]}]}, "links": [{"href": "https://www.ncbi.nlm.nih.gov/bioproject/PRJNA454771", "rel": "download"}, {"href": "https://maps.bonares.de/mapapps/resources/apps/bonares/index.html?lang=en&doi=9d477f07-9206-425d-bc3f-7d9c18b5f0a2", "rel": null}, {"href": "https://metadata.bonares.de:443/smartEditor/preview/Inplamint_2_j\u00fclich_ID5002_5005.PNG", "name": "preview", "description": "Web image thumbnail (URL)", "protocol": "WWW:LINK-1.0-http--image-thumbnail", "rel": "preview"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/72ca6e98-5aab-4884-bf1b-56931482eb94", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "9d477f07-9206-425d-bc3f-7d9c18b5f0a2", "name": "item", "description": "9d477f07-9206-425d-bc3f-7d9c18b5f0a2", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/9d477f07-9206-425d-bc3f-7d9c18b5f0a2"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2021-03-22T00:00:00Z"}}, {"id": "e2e90872-b266-42e4-8cc8-846c76fc22f7", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[9.51, 52.33], [9.51, 54.76], [14.24, 54.76], [14.24, 52.33], [9.51, 52.33]]]}, "properties": {"themes": [{"concepts": [{"id": "farming"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}, {"concepts": [{"id": "Soil"}, {"id": "agriculture"}, {"id": "arable farming"}, {"id": "chemical contamination"}, {"id": "cropping systems"}, {"id": "farmland"}, {"id": "freshwater ecosystem"}, {"id": "freshwater invertebrates"}, {"id": "grasslands"}, {"id": "habitats"}, {"id": "indicators"}, {"id": "pesticides"}, {"id": "ponds"}, {"id": "water pollution"}], "scheme": "AGROVOC Multilingual agricultural thesaurus"}, {"concepts": [{"id": "opendata"}, {"id": "MonVia"}], "scheme": "Individual"}, {"concepts": [{"id": "Boden"}], "scheme": "GEMET - INSPIRE themes, version 1.0"}, {"concepts": [{"id": "Germany"}, {"id": "Brandenburg"}, {"id": "Uckermark"}], "scheme": "individual"}], "license": "CC BY", "rights": "Restrictions applied to assure the protection of privacy or intellectual property, and any special restrictions or limitations or warnings on using the resource or metadata. 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 ZALF Datenerfassung's research activities.\" Although every care has been taken in preparing and testing the data, the ZALF Datenerfassung and the BonaRes Data Centre cannot guarantee that the data are correct; neither does the ZALF Datenerfassung 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 ZALF Datenerfassung and BonaRes Data Centre will not be responsible for any direct or indirect use which might be made of the data.", "updated": "2025-07-17", "type": "Dataset", "created": "2025-05-23", "language": "eng", "title": "Field data of benthic invertebrate and pesticide effects in 159 samples from 138 small water bodies the northeast German lowlands", "description": "The presented dataset was obtained in a comprehensive field study of small standing water bodies located in an agricultural landscape in the northeastern German lowlands. We collected biological data (benthic invertebrate taxa abundances) and chemical data (pesticide residues and nutrient concentrations) as well as data on environmental parameters (e.g., conductivity, pH and habitat type) for 154 samples within the time period of 2015-2021. Benthic invertebrates were sampled with a hand net (mesh size 500 \u03bcm) using a habitat-specific, area standardized method. Sampled habitats were: fine particulate organic matter (FPOM), coarse particulate organic matter (CPOM), submersed macrophytes, reed, flooded terrestrial vegetation, overhanging terrestrial vegetation, stones, and dead wood. Mixed water samples (5 L) for chemical analysis of nutrients and pesticides were taken by grab sampling from four to six points around the shoreline. The dataset was analysed in order to evaluate effects of agricultural and environmental stressors like habitat diversity, pesticide and nutrient contamination on diversity and structure of benthic invertebrate communities.  This table contains the index of all tables forming this data collection.\n\nRelated datasets are listed in the metadata element 'Related Identifier'.\nDataset version 1.0", "formats": [{"name": "CSV"}], "keywords": ["Soil", "agriculture", "arable farming", "chemical contamination", "cropping systems", "farmland", "freshwater ecosystem", "freshwater invertebrates", "grasslands", "habitats", "indicators", "pesticides", "ponds", "water pollution", "opendata", "MonVia", "Boden", "Germany", "Brandenburg", "Uckermark"], "contacts": [{"name": "Leibniz Centre for Agricultural Landscape Research", "organization": "ZALF", "position": "Research Platform 'Data Analysis & Simulation' - Workgroup Research Data Management", "roles": ["publisher"], "phones": [{"value": "+49 33432 82 300"}], "emails": [{"value": "dataservice@zalf.de"}], "addresses": [{"deliveryPoint": ["Eberswalder Strasse 84"], "city": "M\u00fcncheberg", "administrativeArea": "Brandenburg", "postalCode": "15374", "country": 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