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Integrative and comprehensive Understanding on Polar Environments (iCUPE): the concept and initial results

handle: 20.500.14243/403466 , 10138/324875 , 10900/110996
Integrative and comprehensive Understanding on Polar Environments (iCUPE): the concept and initial results
Abstract. The role of polar regions increases in terms of megatrends such as globalization, new transport routes, demography and use of natural resources consequent effects of regional and transported pollutant concentrations. We set up the ERA-PLANET Strand 4 project iCUPE – integrative and Comprehensive Understanding on Polar Environments to provide novel insights and observational data on global grand challenges with an Arctic focus. We utilize an integrated approach combining in situ observations, satellite remote sensing Earth Observations (EO) and multi-scale modeling to synthesize data from comprehensive long-term measurements, intensive campaigns and satellites to deliver data products, metrics and indicators to the stakeholders concerning the environmental status, availability and extraction of natural resources in the polar areas. The iCUPE work consists of thematic state-of-the-art research and provision of novel data in atmospheric pollution, local sources and transboundary transport, characterization of arctic surfaces and their changes, assessment of concentrations and impacts of heavy metals and persistent organic pollutants and their cycling, quantification of emissions from natural resource extraction and validation and optimization of satellite Earth Observation (EO) data streams. In this paper we introduce the iCUPE project and summarize initial results arising out of integration of comprehensive in situ observations, satellite remote sensing and multiscale modeling in the Arctic context.
- Paul Scherrer Institute Switzerland
- University of Grenoble France
- Lomonosov Moscow State University Russian Federation
- NCSR Demokritos Greece
- Ca Foscari University of Venice Italy
570, SNOW-COVERED AREA, 550, aerosol, QC1-999, ARCTIC AIR-POLLUTION, EURASIAN EXPERIMENT PEEX, [PHYS.PHYS.PHYS-AO-PH] Physics [physics]/Physics [physics]/Atmospheric and Oceanic Physics [physics.ao-ph], BOREAL FOREST, Arctic, PARTICLE FORMATION, PERSISTENT ORGANIC POLLUTANTS, pollutant transport, LONG-RANGE TRANSPORT, QD1-999, satellite data, persistent organic pollutant, [PHYS.PHYS.PHYS-AO-PH]Physics [physics]/Physics [physics]/Atmospheric and Oceanic Physics [physics.ao-ph], concentration (composition), atmospheric pollution, regional climate, Physics, source apportionment, heavy metal, ATMOSPHERIC MERCURY, polar region, Physical sciences, Chemistry, climate change, iCUPE, SOURCE APPORTIONMENT, BLACK CARBON, trend analysis
570, SNOW-COVERED AREA, 550, aerosol, QC1-999, ARCTIC AIR-POLLUTION, EURASIAN EXPERIMENT PEEX, [PHYS.PHYS.PHYS-AO-PH] Physics [physics]/Physics [physics]/Atmospheric and Oceanic Physics [physics.ao-ph], BOREAL FOREST, Arctic, PARTICLE FORMATION, PERSISTENT ORGANIC POLLUTANTS, pollutant transport, LONG-RANGE TRANSPORT, QD1-999, satellite data, persistent organic pollutant, [PHYS.PHYS.PHYS-AO-PH]Physics [physics]/Physics [physics]/Atmospheric and Oceanic Physics [physics.ao-ph], concentration (composition), atmospheric pollution, regional climate, Physics, source apportionment, heavy metal, ATMOSPHERIC MERCURY, polar region, Physical sciences, Chemistry, climate change, iCUPE, SOURCE APPORTIONMENT, BLACK CARBON, trend analysis
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