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WISE WFD Reference Spatial Datasets reported under Water Framework Directive 2010 - INTERNAL VERSION - version 1.9, Sep. 2025

The dataset contains information on the European river basin districts, the river basin district sub-units, the surface water bodies and the groundwater bodies delineated for the 1st River Basin Management Plans (RBMP) under the Water Framework Directive (WFD) as well as the European monitoring sites used for the assessment of the status of the abovementioned surface water bodies and groundwater bodies. This data set is available only for internal use of the European Commission and the European Environment Agency. Please use the "PUBLIC VERSION": https://sdi.eea.europa.eu/catalogue/srv/eng/catalog.search#/metadata/6b55632c-63df-4542-97f0-363dfb6d3431 for external use. The information was reported to the European Commission under the Water Framework Directive (WFD) reporting obligations. The dataset compiles the available spatial data related to the 1st RBMPs which were due in 2010 (hereafter WFD2010). See http://rod.eionet.europa.eu/obligations/521 for further information on the WFD2010 reporting. It was prepared to support the reporting of the 2nd RBMPs due in 2016 (hereafter WFD2016). See http://rod.eionet.europa.eu/obligations/715 for further information on the WFD2016 reporting. See also https://rod.eionet.europa.eu/obligations/766 for information on the Environmental Quality Standards Directive - Preliminary programmes of measures and supplementary monitoring. The data reported in WFD2010 were updated using data reported in WFD2016, whenever the spatial objects are identical in 2010 and 2016. For WFD2010 objects, some information may be missing, if the objects no longer exist in the 2nd River Basin Management Plans, and were not reported in WFD2016. Where available, spatial data related to the 3rd RBMPs due in 2022 (hereafter WFD2022) was used to update the WFD2016 data. See https://rod.eionet.europa.eu/obligations/780 for further information on the WFD2022 reporting. Note: * This dataset has been reported by the member states. The subsequent QC revealed some problems caused by self-intersections elements. Data in GPKG-format should be processed using QGIS.

WISE WFD Reference Spatial Datasets reported under Water Framework Directive 2016 - INTERNAL VERSION - version 1.7, Jul. 2024

The dataset contains information on the European river basin districts, the river basin district sub-units, the surface water bodies and the groundwater bodies delineated for the 2nd River Basin Management Plans (RBMP) under the Water Framework Directive (WFD) as well as the European monitoring sites used for the assessment of the status of the above mentioned surface water bodies and groundwater bodies. This data set is available only for internal use of the European Commission and the European Environment Agency. Please use the "PUBLIC VERSION": https://sdi.eea.europa.eu/catalogue/srv/eng/catalog.search#/metadata/a0731ebf-6bcc-4afe-bab0-39e7aa88eaba for external use. The information was reported to the European Commission under the Water Framework Directive (WFD) reporting obligations. The dataset compiles the available spatial data related to the 2nd RBMPs due in 2016 (hereafter WFD2016). See http://rod.eionet.europa.eu/obligations/715 for further information on the WFD2016 reporting. See also https://rod.eionet.europa.eu/obligations/766 for information on the Environmental Quality Standards Directive - Preliminary programmes of measures and supplementary monitoring. Where available, spatial data related to the 3rd RBMPs due in 2022 (hereafter WFD2022) was used to update the WFD2016 data. See https://rod.eionet.europa.eu/obligations/780 for further information on the WFD2022 reporting.

Schwerpunktprogramm (SPP) 2238: Dynamik der Erzmetallanreicherung, Teilprojekt: Ist metamorphe Zinn-Umverteilung ein essenzieller Prozess für die Bildung großer Zinnlagerstätten?

Bedeutende primäre Sn-Lagerstätten sind an geochemisch hoch-spezialisierte, unter reduzierenden Bedingungen gebildete S-Typ Granite gebunden. Zinnanreicherung erfolgt jedoch nicht nur durch fraktionierte Kristallisation und hydrothermale Umverteilung auf dem Platznahme-Niveau der Intrusion, sondern hängt auch vom Protolith und den Schmelzbedingungen, sowie vom Sn-Gehalt dieser Ausgangsgesteine an. Darüber hinaus kann prograd-metamorphe Umverteilung zu einer Anreicherung von Sn im Ausgangsgestein führen. Traditionell wird die metamorphe Mobilisierung von Sn als nicht wichtig betrachtet. Es gibt jedoch im Erzgebirge einzelne Skarne (z. B. Hämmerlein) und Quarz-Glimmer-Schiefer (z. Bsp. Bockau and Aue) mit Sn-reichen metamorphen Mineralen, die eindeutig älter sind als die lokalen variszischer Sn-spezifischen Granite, was beweist, dass Sn während der Metamorphose mobil war. Die Frage ist damit, inwieweit metamorphogene Sn-Anreicherung ein essentieller Schritt in der Anreicherung von Sn für die spätere Bildung magmatischer Sn Lagestätten ist. Dieses Projekt konzentriert sich auf die Sn-reichen Quarz-Glimmer-Schiefer (mit 200 bis zu lokal 5000 ppm Sn) mit an Quarzschlieren gebundener Sn-Vererzung (>1% Sn) aus dem Gebiet von Bockau. Wir untersuchen folgende Fragen: (i) Es gibt mehrere texturelle und strukturelle Typen von Kassiterit. Unter welchen P-T-d Bedingungen haben sich die unterschiedlichen Kassiterit-Typen gebildet? Die U-Pb Datierung der einzelnen Kassiterit-Typen erlaubt es, die Zeit und die Bedingungen der metamorphen Sn-Mobilisierung einzugrenzen. (ii) Welche Elemente wurden zusammen mit Sn mobilisiert. Dazu wird die chemische Zusammensetzung nicht vererzter und unterschiedlich intensiv vererzter Quarz-Glimmer-Schiefer miteinander verglichen. Die Isotopenzusammensetzung von Li, B, Sr, Nd and Pb wird verwendet, um einen geochemischen Fingerabdruck der Quelle der Erzelemente zu erhalten; (iii) Ändert sich der Stoffbestand der Fluide mit der Zeit? Wir verwenden dazu die chemische Zonierung von Biotit, Granat und Kassiterit. Von besonderem Interesse ist ob und wie die Fluidzusammensetzung einen Einfluss darauf hat ob Sn in Silikatminerale substituiert oder eigene Phasen bildet, da die Form in welcher Sn auftritt möglicherweise die Verteilung zwischen Mineral und Teilschmelze bei beginnendem Schmelzen der Ausgangsgesteine beeinträchtigen kann. Es gibt Beschreibungen von vergleichbaren stratiformen Sn Vererzungen (jedoch mit Sulfiden) in den entsprechenden tektonischen Einheiten in Polen und er Tschechischen Republik. Ein Vergleich der Vorkommen von Bockau mit den polnischen und tschechischen Vorkommen erlaubt eine Unterscheidung von Charakteristika die von allgemeiner Bedeutung sind und solchen die eher von lokaler Bedeutung sind. Eine Schlüsselfrage dieses Projektes ist ob die metamorphe Mobilisierung von Sn im prä-kollisionalen Akkretionskeil ein Prozess ist, der die Erz-Höffigkeit später daraus entwickelter S-Typ-Granite kontrolliert.

EU27_2020 basemap for EEA internal use

This Discomap web map service provides an EU-27 (2020) basemap for internal EEA use as a background layer in viewers or any other web application. It is provided as REST and as OGC WMS services, dynamic and cached. The cached service has a custom cache at the following scales: 1/50.000.000 1/42.000.000 1/36.000.000 (Europe's size) 1/30.000.000 1/20.000.000 1/10.000.000 1/5.000.000 1/2.500.000 1/1.000.000.

Concentrations of nitrogen and phosphorus in European agricultural soils, Oct. 2020

This data set contains current nitrogen (N) and critical phosphorus (P) concentrations and their exceedances of the current and required Nitrogen Use Efficiencies (NUE) in Europe. This data set has been compiled by the European Topic Centre on Urban, Land and Soil Systems (ETC/ULS) in the context of a study on metal and nutrient dynamics where the fate and dynamics of the most abundant heavy metals and nutrients in agricultural soils were investigated. The purpose of this study was to investigate the impacts of agricultural intensification in Europe, and to understand its environmental impact.

WISE WFD Reference Spatial Datasets reported under Water Framework Directive 2010 - PUBLIC VERSION - version 1.9, Sep. 2025

The dataset contains information on the European river basin districts, the river basin district sub-units, the surface water bodies and the groundwater bodies delineated for the 1st River Basin Management Plans (RBMP) under the Water Framework Directive (WFD) as well as the European monitoring sites used for the assessment of the status of the abovementioned surface water bodies and groundwater bodies. The information was reported to the European Commission under the Water Framework Directive (WFD) reporting obligations. The dataset compiles the available spatial data related to the 1st RBMPs which were due in 2010 (hereafter WFD2010). See http://rod.eionet.europa.eu/obligations/521 for further information on the WFD2010 reporting. It was prepared to support the reporting of the 2nd RBMPs due in 2016 (hereafter WFD2016). See http://rod.eionet.europa.eu/obligations/715 for further information on the WFD2016 reporting. See also https://rod.eionet.europa.eu/obligations/766 for information on the Environmental Quality Standards Directive - Preliminary programmes of measures and supplementary monitoring. The data reported in WFD2010 were updated using data reported in WFD2016, whenever the spatial objects are identical in 2010 and 2016. For WFD2010 objects, some information may be missing, if the objects no longer exist in the 2nd River Basin Management Plans, and were not reported in WFD2016. Where available, spatial data related to the 3rd RBMPs due in 2022 (hereafter WFD2022) was used to update the WFD2016 data. See https://rod.eionet.europa.eu/obligations/780 for further information on the WFD2022 reporting. Note: * This dataset has been reported by the member states. The subsequent QC revealed some problems caused by self-intersections elements. Data in GPKG-format should be processed using QGIS.

NECPR: Additional Reporting Obligations in the area of Renewable Energy (Annex XVI) dataset, 2023

Additional reporting in the area of renewable energy is a dataset under the National Energy and Climate Progress Reports (NECPRs), which is reported every second year (starting in 2023) by EU Member States. The dataset provides information regarding Member States functioning system for guarantees of origin (GO), renewable energy surplus/deficits, biomass use and impacts, and renewable energy usage in buildings. The EEA collects and quality checks this data. The dataset links to data from Eurostat. This reporting obligation comes from the Governance Regulation 2018/1999, Implementing Regulation (EU) 2022/2299 (Annex XVI).

GISCO - Nomenclature of Territorial Units for Statistics 2021 (NUTS 2021), May 2021

The 'GISCO NUTS 2021' data set represents the NUTS 2021 regulation and statistical regions by means of multipart polygon, polyline and point topology. The NUTS geographical information is completed by attribute tables and a set of cartographic help lines to better visualize multipart polygonal regions. The NUTS nomenclature is a hierarchical classification of statistical regions defined by Eurostat. The NUTS classification subdivides the EU economic territory into 3 statistical levels. The NUTS 2021 classification has been established through the Commission Delegated Regulation 2019/1755, which entered into force on 8th August 2019 and applies from 1st January 2021. A non official NUTS-like classification has been defined for the EFTA countries and the candidate countries. At present, six scale ranges (100K, 1M, 3M, 10M and 20M, 60M) are maintained in the GISCO geodatabase. The polygon and boundary classes delineate the regions, while the points provide an anchor for each region. Associated tables contain basic information such as the name of the region. The public data set will be available at 1M, 3M, 10M, 20M, 60M, while the full data set at 100K is restricted. The data set covers EU Member States, EFTA countries, EU candidate countries and the UK. Following the departure of the UK from the European Union, the UK is no longer flagged as an EU Member State but retains its place in the NUTS and statistical regions data set. This dataset (NUTS_2021) is derived from the EuroBoundary Map 2020 (EBM2020) from Eurogeographics as well as GISCO NUTS 2016 (from Türkiye). The list of NUTS2021 codes including changes with respect to NUTS2016 is available on https://ec.europa.eu/eurostat/documents/345175/629341/NUTS2021.xlsx. The public metadata for NUTS 2021 released by Eurostat is available here: https://gisco-services.ec.europa.eu/distribution/v2/nuts/nuts-2021-metadata.xml. This revision (May 2021) includes minor changes in the dataset such as (see https://gisco-services.ec.europa.eu/distribution/v2/nuts/nuts-2021-release-notes.txt): * 2020-10-05 Point snapping is disabled in all datasets, number of decimals increased for 01M datasets. * 2020-11-18 Inclusion of Jan Mayen and Svalbard in to Norways Statistical Regions. Amendment to Serbia NUTS BN line status. * 2020-12-05 Fixed broken utf-8 encoding. * 2021-03-15 Added LAU 2011,2012,2013,2014,2015,2020 * 2021-04-26 Fixed country labels 2001, 2006 (incorrect Kosovo coordinates) IMPORTANT NOTE: Additional information, including the conditions of use and acknowledgement notice is included in the document provided with the dataset "GISCO NUTS 2021 Additional Information.pdf". Public access to this data set is restricted due to intellectual property rights. It shall only be used internally by the EEA, its ETCs and subcontractors working on behalf of the EEA. This metadata has been slightly adapted from the original metadata information provided by Eurostat (European Commission) and is to be used only for internal EEA purposes. An introduction to the NUTS classification is available here: http://ec.europa.eu/eurostat/web/nuts/overview.

Entsorgung radioaktiver Abfaelle

Das nukleare Entsorgungskonzept der Schweiz sieht zwei Endlagertypen vor: ein Endlager fuer schwach- und mittelaktive Abfaelle (SAM) und ein Endlager fuer hochaktive und langlebige mittelaktive Abfaelle (HAA). In den Endlagern werden die konditionierten Abfaelle durch eine Reihe von technischen und geologischen Barrieren vom Lebensraum isoliert, gemaess den Schutzzielen der Sicherheitsbehoerden (Dosislimite 0,1 mSv/Jahr). In verschiedenen Teilprojekten werden Forschungsarbeiten betr. technischer Sicherheitsbarrieren, Verhalten der Abfaelle, Eignung potentieller Wirtgesteine und Standorte sowie Analysen fuer die Beurteilung der Langzeitsicherheit durchgefuehrt. Die Arbeiten umfassen auch Beteiligungen an standortunabhaengigen internationalen Forschungsprojekten so z.B. Felslabor Grimsel (Kristallingestein) und Felslabor Mont Terri (Tongestein). Am Felslabor Grimsel sind neben den deutschen Partnern (BMWi, BGR, GRS und FZK) auch Organisationen aus Japan, Schweden, Frankreich, Spanien, USA, Taiwan und der Tschechischen Republik beteiligt.

National emissions reported to the Convention on Long-range Transboundary Air Pollution (LRTAP Convention)

Data compiled are annual national total and sectoral emissions of air pollutants and associated activity data reported by EEA member and cooperating countries. Data are available for download in the UNECE/EMEP Nomenclature for Reporting (NFR) format used by countries. A consolidated dataset for all countries and consistent with the European Union's air pollutant emission inventory submission to the LRTAP Convention is also provided.

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