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Sentinel-5P TROPOMI – Ozone (O3), Level 3 – Global

The TROPOMI instrument onboard the Copernicus SENTINEL-5 Precursor satellite is a nadir-viewing, imaging spectrometer that provides global measurements of atmospheric properties and constituents on a daily basis. It is contributing to monitoring air quality and climate, providing critical information to services and decision makers. The instrument uses passive remote sensing techniques by measuring the top of atmosphere solar radiation reflected by and radiated from the earth and its atmosphere. The four spectrometers of TROPOMI cover the ultraviolet (UV), visible (VIS), Near Infra-Red (NIR) and Short Wavelength Infra-Red (SWIR) domains of the electromagnetic spectrum. The operational trace gas products generated at DLR on behave ESA are: Ozone (O3), Nitrogen Dioxide (NO2), Sulfur Dioxide (SO2), Formaldehyde (HCHO), Carbon Monoxide (CO) and Methane (CH4), together with clouds and aerosol properties. Daily observations are binned onto a regular latitude-longitude grid. This product displays the ozone (O3) concentration globally (in Dobson Unit). The ozone layer in the stratosphere protects the biosphere from harmful solar ultraviolet radiation. Ozone in troposphere can pose risks to the health of humans, animals, and vegetation. This product is generated in the scope of the DLR project INPULS. INPULS develops (a) innovative retrieval algorithms and processors for the generation of value-added products from the atmospheric Copernicus missions Sentinel-5 Precursor, Sentinel-4, and Sentinel-5, (b) cloud-based (re)processing systems, (c) improved data discovery and access technologies as well as server-side analytics for the users, and (d) data visualization services.

Sentinel-5P TROPOMI – Cloud Fraction (CF), Level 3 – Global

The TROPOMI instrument onboard the Copernicus SENTINEL-5 Precursor satellite is a nadir-viewing, imaging spectrometer that provides global measurements of atmospheric properties and constituents on a daily basis. It is contributing to monitoring air quality and climate, providing critical information to services and decision makers. The instrument uses passive remote sensing techniques by measuring the top of atmosphere solar radiation reflected by and radiated from the earth and its atmosphere. The four spectrometers of TROPOMI cover the ultraviolet (UV), visible (VIS), Near Infra-Red (NIR) and Short Wavelength Infra-Red (SWIR) domains of the electromagnetic spectrum. The operational trace gas products generated at DLR on behave ESA are: Ozone (O3), Nitrogen Dioxide (NO2), Sulfur Dioxide (SO2), Formaldehyde (HCHO), Carbon Monoxide (CO) and Methane (CH4), together with clouds and aerosol properties. This product displays the Cloud Fraction (CF) around the globe. Clouds play a crucial role in the Earth's climate system and have significant effects on trace gas retrievals. The radiometric cloud fraction is retrieved from the UV using the OCRA algorithm. Daily observations are binned onto a regular latitude-longitude grid. This product is created in the scope of the project INPULS. It develops (a) innovative retrieval algorithms and processors for the generation of value-added products from the atmospheric Copernicus missions Sentinel-5 Precursor, Sentinel-4, and Sentinel-5, (b) cloud-based (re)processing systems, (c) improved data discovery and access technologies as well as server-side analytics for the users, and (d) data visualization services.

Sentinel-5P TROPOMI Surface Nitrogendioxide (NO2), Level 4 – Regional (Germany and neighboring countries)

The TROPOMI instrument onboard the Copernicus SENTINEL-5 Precursor satellite is a nadir-viewing, imaging spectrometer that provides global measurements of atmospheric properties and constituents on a daily basis. It is contributing to monitoring air quality and climate, providing critical information to services and decision makers. The instrument uses passive remote sensing techniques by measuring the top of atmosphere solar radiation reflected by and radiated from the earth and its atmosphere. The four spectrometers of TROPOMI cover the ultraviolet (UV), visible (VIS), Near Infra-Red (NIR) and Short Wavelength Infra-Red (SWIR) domains of the electromagnetic spectrum. The operational trace gas products generated at DLR on behave ESA are: Ozone (O3), Nitrogen Dioxide (NO2), Sulfur Dioxide (SO2), Formaldehyde (HCHO), Carbon Monoxide (CO) and Methane (CH4), together with clouds and aerosol properties. This product displays the Nitrogen Dioxide (NO2) near surface concentration for Germany and neighboring countries as derived from the POLYPHEMUS/DLR air quality model. Surface NO2 is mainly generated by anthropogenic sources, e.g. transport and industry. POLYPHEMUS/DLR is a state-of-the-art air quality model taking into consideration - meteorological conditions, - photochemistry, - anthropogenic and natural (biogenic) emissions, - TROPOMI NO2 observations for data assimilation. This Level 4 air quality product (surface NO2 at 15:00 UTC) is based on innovative algorithms, processors, data assimilation schemes and operational processing and dissemination chain developed in the framework of the INPULS project. The DLR project INPULS develops (a) innovative retrieval algorithms and processors for the generation of value-added products from the atmospheric Copernicus missions Sentinel-5 Precursor, Sentinel-4, and Sentinel-5, (b) cloud-based (re)processing systems, (c) improved data discovery and access technologies as well as server-side analytics for the users, and (d) data visualization services.

Errichtung einer Anlage zur Schwefelverbrennung für die CO2-freie Herstellung von Prozessdampf und die optimale Versorgung mit Rohstoffen

Die Chemiewerk Bad Köstritz GmbH ist ein mittelständischer Hersteller von anorganischen Spezialchemikalien. Für die chemischen Herstellungsprozesse im Werk wird Dampf benötigt, für dessen Erzeugung Erdgas verbrannt wird. Zur Herstellung von Thiosulfaten und Sulfiten kommen flüssiges Schwefeldioxid und Schwefel zum Einsatz. Um Kieselsole und -gele herzustellen, wird konzentrierte Schwefelsäure verwendet. Bisher werden die benötigten Rohstoffe von externen Lieferanten bezogen und am Standort gelagert. Gegenstand des Vorhabens ist die Umsetzung eines innovativen Verfahrenskonzepts, mit welchem auf Basis von flüssigem Schwefel die weiteren benötigten Rohstoffe nach Bedarf am Standort hergestellt werden können. Im Zentrum steht die Errichtung einer Anlage zur Verbrennung von flüssigem Schwefel, der als Abprodukt bei Entschwefelungsprozessen in Raffinerien oder Kraftwerken anfällt. Das bei der Verbrennung entstehende Schwefeldioxid (SO 2 ) wird mit einem Abhitzekessel abgekühlt. Ein Teil davon wird im Anschluss mit Hilfe einer Adsorptionskälteanlage verflüssigt. Der andere Teil des SO 2 wird in einem Konverter mittels eines Katalysators zu Schwefeltrioxid (SO 3 ) oxidiert und anschließend in einem Adsorber in konzentrierte Schwefelsäure umgewandelt, das Verhältnis SO 2 zu H 2 SO 4 (Schwefelsäure) kann dem Bedarf der Produktion flexibel angepasst werden. Mit der bei den Prozessen entstehenden Wärme wird Dampf erzeugt, welcher für den Antrieb des Gebläses für die Verbrennungsluft, zum Betrieb der Adsorptionskälteanlage und mittels einer Turbine zur Stromerzeugung genutzt wird. Der restliche Dampf wird in das vorhandene Dampfnetz des Werks eingespeist. Der erzeugte Strom wird zum Betrieb der Anlage und darüber hinaus für den Eigenbedarf am Standort verwendet. Das innovative Verfahrenskonzept geht deutlich über den Stand der Technik in der Chemiebranche hinaus und hat Modellcharakter. Es zeigt auf, wie an einem Standort aus einem einzigen Rohstoff verschiedene Produkte wirtschaftlich, bedarfsgerecht und gleichzeitig umweltfreundlich hergestellt werden können. Die Reduzierung der Anzahl der Rohstofftransporte trägt zur Umweltentlastung bei. Das Verfahren erzeugt keine Abfälle und Abwässer. Mit der konsequenten Abwärmenutzung zur Dampferzeugung können ca. 50 Prozent des Grundbedarfs an Dampf des Werks gedeckt und dadurch etwa die Hälfte des bisher zur Dampferzeugung genutzten Erdgases eingespart werden. Gegenüber dem gegenwärtigen Produktionsverfahren können insgesamt ca. 3.400 Tonnen CO 2 -Emissionen jährlich vermieden werden, was einer Minderung um etwa 33 Prozent entspricht. Branche: Chemische und pharmazeutische Erzeugnisse, Gummi- und Kunststoffwaren Umweltbereich: Ressourcen Fördernehmer: Chemiewerk Bad Köstritz GmbH Bundesland: Thüringen Laufzeit: seit 2019 Status: Laufend

Sentinel-5P TROPOMI – Cloud-Top Height (CTH), Level 3 – Global

The TROPOMI instrument onboard the Copernicus SENTINEL-5 Precursor satellite is a nadir-viewing, imaging spectrometer that provides global measurements of atmospheric properties and constituents on a daily basis. It is contributing to monitoring air quality and climate, providing critical information to services and decision makers. The instrument uses passive remote sensing techniques by measuring the top of atmosphere solar radiation reflected by and radiated from the earth and its atmosphere. The four spectrometers of TROPOMI cover the ultraviolet (UV), visible (VIS), Near Infra-Red (NIR) and Short Wavelength Infra-Red (SWIR) domains of the electromagnetic spectrum. The operational trace gas products generated at DLR on behave ESA are: Ozone (O3), Nitrogen Dioxide (NO2), Sulfur Dioxide (SO2), Formaldehyde (HCHO), Carbon Monoxide (CO) and Methane (CH4), together with clouds and aerosol properties. This product displays the Cloud-Top Height (CTH) around the globe. Clouds play a crucial role in the Earth's climate system and have significant effects on trace gas retrievals. The cloud-top height is retrieved from the O2-A band using the ROCINN algorithm. Daily observations are binned onto a regular latitude-longitude grid. This product is created in the scope of the project INPULS. It develops (a) innovative retrieval algorithms and processors for the generation of value-added products from the atmospheric Copernicus missions Sentinel-5 Precursor, Sentinel-4, and Sentinel-5, (b) cloud-based (re)processing systems, (c) improved data discovery and access technologies as well as server-side analytics for the users, and (d) data visualization services.

Schwefeldioxid Brunsbüttel, Cuxhavener Straße 1-Stunden Mittelwert 2025

Um die Gesundheit der Menschen und die Vegetation vor den Einflüssen zu hoher Luftschadstoffbelastungen zu schützen, wird die Luftqualität laufend untersucht und nach gesetzlichen Vorschriften beurteilt. Dafür betreibt das Landesamt für Umwelt (LfU) in Schleswig-Holstein ein Netz aus Messstationen, an denen mit unterschiedlichen Methoden Luftschadstoffe gemessen werden. Die Messdaten aus Schleswig-Holstein und viele zusätzliche Informationen zu den Messungen werden an das Umweltbundesamt weiter geleitet und von dort gemeinsam mit den Daten aller Bundesländer an die Europäische Kommission gemeldet. Alle aktuell veröffentlichten Daten sind als ***vorläufig*** einzustufen, da sie zu Ihrer schnellen Information zunächst automatisch auf Gültigkeit geprüft werden. Vor der abschließenden Bewertung und Beurteilung der Luftqualität findet später eine mehrstufige Prüfung nach gesetzlichen Vorgaben statt. Bei den CSV-Dateien „fehlt“ am Tag der Umstellung von Normalzeit (MEZ) auf Sommerzeit (MESZ) die 3-Uhr-Messung, am Tag der Umstellung von Sommer- auf Normalzeit gibt es hingegen zwei 3-Uhr-Messungen. Die JSON-Dateien sind von dieser Problematik nicht betroffen, hier wird durchgängig Normalzeit verwendet. [Informationen zur Messstation](https://www.schleswig-holstein.de/DE/Fachinhalte/L/luftqualitaet/Messstationen/BrunsbuettelCux.html)

Sentinel-5P TROPOMI – Cloud Optical Thickness (COT), Level 3 – Global

The TROPOMI instrument onboard the Copernicus SENTINEL-5 Precursor satellite is a nadir-viewing, imaging spectrometer that provides global measurements of atmospheric properties and constituents on a daily basis. It is contributing to monitoring air quality and climate, providing critical information to services and decision makers. The instrument uses passive remote sensing techniques by measuring the top of atmosphere solar radiation reflected by and radiated from the earth and its atmosphere. The four spectrometers of TROPOMI cover the ultraviolet (UV), visible (VIS), Near Infra-Red (NIR) and Short Wavelength Infra-Red (SWIR) domains of the electromagnetic spectrum. The operational trace gas products generated at DLR on behave ESA are: Ozone (O3), Nitrogen Dioxide (NO2), Sulfur Dioxide (SO2), Formaldehyde (HCHO), Carbon Monoxide (CO) and Methane (CH4), together with clouds and aerosol properties. This product displays the Cloud Optical Thickness (COT) around the globe. Clouds play a crucial role in the Earth's climate system and have significant effects on trace gas retrievals. The cloud optical thickness is retrieved from the O2-A band using the ROCINN algorithm. Daily observations are binned onto a regular latitude-longitude grid. This product is created in the scope of the project INPULS. It develops (a) innovative retrieval algorithms and processors for the generation of value-added products from the atmospheric Copernicus missions Sentinel-5 Precursor, Sentinel-4, and Sentinel-5, (b) cloud-based (re)processing systems, (c) improved data discovery and access technologies as well as server-side analytics for the users, and (d) data visualization services.

Sentinel-5P TROPOMI – Formaldehyde (HCHO), Level 3 – Global

The TROPOMI instrument onboard the Copernicus SENTINEL-5 Precursor satellite is a nadir-viewing, imaging spectrometer that provides global measurements of atmospheric properties and constituents on a daily basis. It is contributing to monitoring air quality and climate, providing critical information to services and decision makers. The instrument uses passive remote sensing techniques by measuring the top of atmosphere solar radiation reflected by and radiated from the earth and its atmosphere. The four spectrometers of TROPOMI cover the ultraviolet (UV), visible (VIS), Near Infra-Red (NIR) and Short Wavelength Infra-Red (SWIR) domains of the electromagnetic spectrum. The operational trace gas products generated at DLR on behave ESA are: Ozone (O3), Nitrogen Dioxide (NO2), Sulfur Dioxide (SO2), Formaldehyde (HCHO), Carbon Monoxide (CO) and Methane (CH4), together with clouds and aerosol properties. This product displays the Formaldehyde (HCHO) concentration around the globe. The major HCHO sources are vegetation, fires, traffic and industrial sources. Daily observations are binned onto a regular latitude-longitude grid. This product is created in the scope of the project INPULS. It develops (a) innovative retrieval algorithms and processors for the generation of value-added products from the atmospheric Copernicus missions Sentinel-5 Precursor, Sentinel-4, and Sentinel-5, (b) cloud-based (re)processing systems, (c) improved data discovery and access technologies as well as server-side analytics for the users, and (d) data visualization services.

WMS SL DOP20 (2008) - WMS SL DOP20 (2008)

Web Map Service: Landesamt fuer Vermessung, Geoinformation und Landentwicklung (LVGL) des SAARLANDES:Web Map Service: Landesamt fuer Kataster-, Vermessungs- und Kartenwesen (LKVK) des SAARLANDES

Sentinel-5P TROPOMI – Sulfur dioxide (SO2), Level 3 – Global

The TROPOMI instrument onboard the Copernicus SENTINEL-5 Precursor satellite is a nadir-viewing, imaging spectrometer that provides global measurements of atmospheric properties and constituents on a daily basis. It is contributing to monitoring air quality and climate, providing critical information to services and decision makers. The instrument uses passive remote sensing techniques by measuring the top of atmosphere solar radiation reflected by and radiated from the earth and its atmosphere. The four spectrometers of TROPOMI cover the ultraviolet (UV), visible (VIS), Near Infra-Red (NIR) and Short Wavelength Infra-Red (SWIR) domains of the electromagnetic spectrum. The operational trace gas products generated at DLR on behave ESA are: Ozone (O3), Nitrogen Dioxide (NO2), Sulfur Dioxide (SO2), Formaldehyde (HCHO), Carbon Monoxide (CO) and Methane (CH4), together with clouds and aerosol properties. This product displays the sulphur dioxide (SO2) concentration around the globe. Sulphur dioxide enters the atmosphere through volcanic eruptions and human-related activities. Daily observations are binned onto a regular latitude-longitude grid. This product is created in the scope of the project INPULS. The DLR INPULS project develops (a) innovative retrieval algorithms and processors for the generation of value-added products from the atmospheric Copernicus missions Sentinel-5 Precursor, Sentinel-4, and Sentinel-5, (b) cloud-based (re)processing systems, (c) improved data discovery and access technologies as well as server-side analytics for the users, and (d) data visualization services.

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