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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: orcid bw Al-Bitar, Ahmad;
    Al-Bitar, Ahmad
    ORCID
    Derived by OpenAIRE algorithms or harvested from 3rd party repositories

    Al-Bitar, Ahmad in OpenAIRE
    orcid bw Veronika, Antonenko;
    Veronika, Antonenko
    ORCID
    Derived by OpenAIRE algorithms or harvested from 3rd party repositories

    Veronika, Antonenko in OpenAIRE

    Wheat Biomass for Kherson and Poltava regions in Ukraine The dataset contains Dry Above Ground Biomass (DAM) estimates over the Kherson and Poltava regions in Ukraine for years 2020,2021 and 2022. - Processing:The processing is done using the AgriCarbon-EOv1.5 processing chain, using the TREX processing centre at CNES France.The input remote sensing data are L2A Sentinel-2 surface reflectances provided by the MAJA processing chain based on the Copernicus Sentinel-2 L1C data.The Landcover maps are provided using ML Deep learning based on the Copernicus L2A data.The daily weather data is extracted from ERA5Land products (C3S). -Geophysical variable:Dry Above ground biomass of winter wheat in g/m2. - Extents: * DAM estimates over the Copernicus Sentinel-2 tile 36TWT cover the Kherson region.* DAM estimates over the Copernicus Sentinel-2 tile 36UVA cover the Poltava region. - Spatial resolution:10m resolution estimlates over wheat plots identified in the landcover map. - Temporal coverage:Estimates are provided at the end of the wheat cycle for cycles:* The year 2020 correspond to cycle: 2019-2020* The year 2021 corresponds to cycle : 2020-2021* The year 2022 corresponds to cycle : 2021-2022 - Projection: EPSG:32636 - File content: Each Raster file has 2 bands containing respectively: * band1: mean value of DAM in g/m2. * band2: standard deviation of DAM in g/m2. - List of maps:* Dry_aboveground_biomass_2020_T36TWT_Kherson_Ukraine.tif* Dry_aboveground_biomass_2020_T36UVA_Poltava_Ukraine.tif* Dry_aboveground_biomass_2021_T36TWT_Kherson_Ukraine.tif* Dry_aboveground_biomass_2021_T36UVA_Poltava_Ukraine.tif* Dry_aboveground_biomass_2022_T36TWT_Kherson_Ukraine.tif* Dry_aboveground_biomass_2022_T36UVA_Poltava_Ukraine.tif

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    ZENODO
    Dataset . 2024
    License: CC BY
    Data sources: Datacite
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    ZENODO
    Dataset . 2024
    License: CC BY
    Data sources: Datacite
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    ZENODO
    Dataset . 2024
    License: CC BY
    Data sources: ZENODO
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      ZENODO
      Dataset . 2024
      License: CC BY
      Data sources: Datacite
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      ZENODO
      Dataset . 2024
      License: CC BY
      Data sources: Datacite
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      ZENODO
      Dataset . 2024
      License: CC BY
      Data sources: ZENODO
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  • Authors: Groot, Hugo de;

    The Global Yield Gap Atlas project (GYGA - http://yieldgap.org ) has undertaken a yield gap assessment following the protocol recommended by van Ittersum et. al. (van Ittersum et. al., 2013). This datafile holds the results for rainfed rice.

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  • Authors: Groot, Hugo de;

    The Global Yield Gap Atlas project (GYGA - http://yieldgap.org ) has undertaken a yield gap assessment following the protocol recommended by van Ittersum et. al. (van Ittersum et. al., 2013). This datafile holds the results for rainfed sugarcane.

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    MASSIMO is a distance-independent individual-tree simulator that represents demographic processes (regeneration, growth and mortality) with empirical models that have been parameterized with data from the Swiss NFI. Tree regeneration, growth and mortality are simulated on the regular grid of sample plots of the Swiss NFI, which allows for statistically representative simulations of forest development. ![alt text](https://www.envidat.ch/dataset/8fd996d1-aa7e-41b1-ae6d-1192582c62cc/resource/a12e2cfd-da45-4faf-8291-446c5763ac3c/download/massimo2swissforlab.png)

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  • Authors: Groot, Hugo de;

    The Global Yield Gap Atlas project (GYGA - http://yieldgap.org ) has undertaken a yield gap assessment following the protocol recommended by van Ittersum et. al. (van Ittersum et. al., 2013). This datafile holds the results for rainfed soybean.

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: orcid David Frantz;
    David Frantz
    ORCID
    Harvested from ORCID Public Data File

    David Frantz in OpenAIRE
    orcid bw Franz Schug;
    Franz Schug
    ORCID
    Derived by OpenAIRE algorithms or harvested from 3rd party repositories

    Franz Schug in OpenAIRE
    orcid bw Dominik Wiedenhofer;
    Dominik Wiedenhofer
    ORCID
    Derived by OpenAIRE algorithms or harvested from 3rd party repositories

    Dominik Wiedenhofer in OpenAIRE
    orcid bw André Baumgart;
    André Baumgart
    ORCID
    Derived by OpenAIRE algorithms or harvested from 3rd party repositories

    André Baumgart in OpenAIRE
    +8 Authors

    Humanity’s role in changing the face of the earth is a long-standing concern, as is the human domination of ecosystems. Geologists are debating the introduction of a new geological epoch, the ‘anthropocene’, as humans are ‘overwhelming the great forces of nature’. In this context, the accumulation of artefacts, i.e., human-made physical objects, is a pervasive phenomenon. Variously dubbed ‘manufactured capital’, ‘technomass’, ‘human-made mass’, ‘in-use stocks’ or ‘socioeconomic material stocks’, they have become a major focus of sustainability sciences in the last decade. Globally, the mass of socioeconomic material stocks now exceeds 10e14 kg, which is roughly equal to the dry-matter equivalent of all biomass on earth. It is doubling roughly every 20 years, almost perfectly in line with ‘real’ (i.e. inflation-adjusted) GDP. In terms of mass, buildings and infrastructures (here collectively called ‘built structures’) represent the overwhelming majority of all socioeconomic material stocks. This dataset features a detailed map of material stocks in the CONUS on a 10m grid based on high resolution Earth Observation data (Sentinel-1 + Sentinel-2), crowd-sourced geodata (OSM) and material intensity factors. Spatial extent This subdataset covers the West Coast CONUS, i.e. CA OR WA For the remaining CONUS, see the related identifiers. Temporal extent The map is representative for ca. 2018. Data format The data are organized by states. Within each state, data are split into 100km x 100km tiles (EQUI7 grid), and mosaics are provided. Within each tile, images for area, volume, and mass at 10m spatial resolution are provided. Units are m², m³, and t, respectively. Each metric is split into buildings, other, rail and street (note: In the paper, other, rail, and street stocks are subsumed to mobility infrastructure). Each category is further split into subcategories (e.g. building types). Additionally, a grand total of all stocks is provided at multiple spatial resolutions and units, i.e. t at 10m x 10m kt at 100m x 100m Mt at 1km x 1km Gt at 10km x 10km For each state, mosaics of all above-described data are provided in GDAL VRT format, which can readily be opened in most Geographic Information Systems. File paths are relative, i.e. DO NOT change the file structure or file naming. Additionally, the grand total mass per state is tabulated for each county in mass_grand_total_t_10m2.tif.csv. County FIPS code and the ID in this table can be related via FIPS-dictionary_ENLOCALE.csv. Material layers Note that material-specific layers are not included in this repository because of upload limits. Only the totals are provided (i.e. the sum over all materials). However, these can easily be derived by re-applying the material intensity factors from (see related identifiers): A. Baumgart, D. Virág, D. Frantz, F. Schug, D. Wiedenhofer, Material intensity factors for buildings, roads and rail-based infrastructure in the United States. Zenodo (2022), doi:10.5281/zenodo.5045337. Further information For further information, please see the publication. A web-visualization of this dataset is available here. Visit our website to learn more about our project MAT_STOCKS - Understanding the Role of Material Stock Patterns for the Transformation to a Sustainable Society. Publication D. Frantz, F. Schug, D. Wiedenhofer, A. Baumgart, D. Virág, S. Cooper, C. Gomez-Medina, F. Lehmann, T. Udelhoven, S. van der Linden, P. Hostert, H. Haberl. Weighing the US Economy: Map of Built Structures Unveils Patterns in Human-Dominated Landscapes. In prep Funding This research was primarly funded by the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation programme (MAT_STOCKS, grant agreement No 741950). Workflow development was funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation)—Project-ID 414984028-SFB 1404. Acknowledgments We thank the European Space Agency and the European Commission for freely and openly sharing Sentinel imagery; USGS for the National Land Cover Database; Microsoft for Building Footprints; Geofabrik and all contributors for OpenStreetMap.This dataset was partly produced on EODC - we thank Clement Atzberger for supporting the generation of this dataset by sharing disc space on EODC.

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    ZENODO
    Dataset . 2023
    License: CC BY
    Data sources: Datacite
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    ZENODO
    Dataset . 2023
    License: CC BY
    Data sources: ZENODO
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    ZENODO
    Dataset . 2022
    License: CC BY
    Data sources: ZENODO
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    ZENODO
    Dataset . 2022
    License: CC BY
    Data sources: Datacite
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    ZENODO
    Dataset . 2023
    License: CC BY
    Data sources: Datacite
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      ZENODO
      Dataset . 2023
      License: CC BY
      Data sources: Datacite
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      ZENODO
      Dataset . 2023
      License: CC BY
      Data sources: ZENODO
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      ZENODO
      Dataset . 2022
      License: CC BY
      Data sources: ZENODO
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      ZENODO
      Dataset . 2022
      License: CC BY
      Data sources: Datacite
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      ZENODO
      Dataset . 2023
      License: CC BY
      Data sources: Datacite
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    Authors: Järvinen, Johanna; Bellstedt, Carolin; Athanassiadis, Aristide;

    This excel sheet was made by the CityLoops course participants for Mikkeli, Finland and contains the data needed for the Sankey diagram and indicators for the Sector-wide Circularity Assessment for the Biomass and Construction sectors. "CityLoops - Closing the loop for urban material flows" is a EU Horizon2020 project with 28 partners. (Official project website: https://cityloops.eu/). CityLoops brings together six ambitious European cities to demonstrate a series of innovative tools and urban planning approaches, aimed at closing the loops of urban material flows and increasing their regenerative capacity. (For detailed information please visit: https://cityloops.metabolismofcities.org/library/997499/)

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    ZENODO
    Dataset . 2021
    License: CC BY
    Data sources: Datacite
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    ZENODO
    Dataset . 2021
    License: CC BY
    Data sources: Datacite
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    ZENODO
    Dataset . 2021
    License: CC BY
    Data sources: ZENODO
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      Dataset . 2021
      License: CC BY
      Data sources: Datacite
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      ZENODO
      Dataset . 2021
      License: CC BY
      Data sources: Datacite
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      ZENODO
      Dataset . 2021
      License: CC BY
      Data sources: ZENODO
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  • Authors: Groot, Hugo de;

    The Global Yield Gap Atlas project (GYGA - http://yieldgap.org ) has undertaken a yield gap assessment following the protocol recommended by van Ittersum et. al. (van Ittersum et. al., 2013). This datafile holds the results for rainfed sorghum.

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: orcid bw Jean-Marie, Lescot;
    Jean-Marie, Lescot
    ORCID
    Derived by OpenAIRE algorithms or harvested from 3rd party repositories

    Jean-Marie, Lescot in OpenAIRE
    orcid bw Françoise, Vernier;
    Françoise, Vernier
    ORCID
    Derived by OpenAIRE algorithms or harvested from 3rd party repositories

    Françoise, Vernier in OpenAIRE
    orcid bw Benoit, Othoniel;
    Benoit, Othoniel
    ORCID
    Derived by OpenAIRE algorithms or harvested from 3rd party repositories

    Benoit, Othoniel in OpenAIRE
    orcid Sandrine, Sabatié;
    Sandrine, Sabatié
    ORCID
    Harvested from ORCID Public Data File

    Sandrine, Sabatié in OpenAIRE

    This dataset includes the causal loop diagrams (CLDs) developed by the H2020 COASTAL project’s MAL #4 for the Charente River basin and its coastal zone. These CLDs represent the functioning of the territory in a systemic way, highlighting its main components and interactions among them. The CLDs are the result of multiple sectoral and multi-actor workshops during which stakeholders from different sectors discussed and collaborated to establish a common vision of the land-sea system. The CLDs concern the whole territory and some specific sectors.

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    ZENODO
    Dataset . 2022
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    ZENODO
    Dataset . 2022
    License: CC BY
    Data sources: Datacite
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      ZENODO
      Dataset . 2022
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      ZENODO
      Dataset . 2022
      License: CC BY
      Data sources: Datacite
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    Is móriarracht chomhoibritheach idirnáisiúnta é Tionscadal Idirchomparáide agus Feabhsaithe na Samhla Talmhaíochta (AGMIP) chun feabhas a chur ar staid an ionsamhlúcháin talmhaíochta agus chun tuiscint a fháil ar thionchair aeráide ar an earnáil talmhaíochta ar scála domhanda agus réigiúnach. Le projet d’intercomparaison et d’amélioration des modèles agricoles (AgMIP) est un important effort de collaboration internationale visant à améliorer l’état de la simulation agricole et à comprendre les impacts climatiques sur le secteur agricole à l’échelle mondiale et régionale. Проектът за взаимно сравнение и подобряване на селскостопанския модел (AgMIP) е голямо международно съвместно усилие за подобряване на състоянието на селскостопанската симулация и за разбиране на въздействието на климата върху селскостопанския сектор в световен и регионален мащаб. Το Αγροτικό Μοντέλο Intercomparison and Improvement Project (AgMIP) είναι μια σημαντική διεθνής συνεργατική προσπάθεια για τη βελτίωση της κατάστασης της γεωργικής προσομοίωσης και την κατανόηση των κλιματικών επιπτώσεων στον γεωργικό τομέα σε παγκόσμια και περιφερειακή κλίμακα. Проект міжпорівняння та вдосконалення сільськогосподарської моделі (AgMIP) є основними міжнародними спільними зусиллями для поліпшення стану сільськогосподарського моделювання та розуміння впливу клімату на сільськогосподарський сектор у глобальному та регіональному масштабах. Het Agricultural Model Intercomparison and Improvement Project (AgMIP) is een belangrijke internationale samenwerkingsinspanning om de staat van de landbouwsimulatie te verbeteren en de klimaateffecten op de landbouwsector op wereldwijde en regionale schaal te begrijpen. Proiectul de Intercomparare și Îmbunătățire a Modelelor Agricole (AgMIP) este un efort internațional major de colaborare pentru a îmbunătăți starea simulării agricole și pentru a înțelege impactul asupra climei asupra sectorului agricol la scară globală și regională. L'Agricultural Model Intercomparison and Improvement Project (AgMIP) è un importante sforzo di collaborazione internazionale per migliorare lo stato della simulazione agricola e per comprendere gli impatti climatici sul settore agricolo su scala globale e regionale. Das Agrarmodell Intercomparison and Improvement Project (AgMIP) ist eine wichtige internationale Zusammenarbeit, um den Stand der landwirtschaftlichen Simulation zu verbessern und Klimaauswirkungen auf den Agrarsektor auf globaler und regionaler Ebene zu verstehen. Lauksaimniecības modeļu savstarpējās salīdzināšanas un uzlabošanas projekts (AgMIP) ir nozīmīgs starptautisks sadarbības pasākums, lai uzlabotu lauksaimniecības simulācijas stāvokli un izprastu klimata ietekmi uz lauksaimniecības nozari globālā un reģionālā mērogā.

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