CarbEx · Tracing carbon exchanges/fluxes between Arctic and Atlantic basins
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2019-11-01 → 2021-10-31
- Финансиране от ЕС
- 219 312 €
- Участници
- 1
- Схема
- MSCA-IF-EF-ST
Линиите свързват координатора с партньорите.
Накратко на български
Размяната на въглерод между Северния и Атлантическия океан се проследява чрез анализ на разтвореното органично вещество, носено от реките. Това помага да се разберат ефектите от глобалното затопляне и топенето на ледниците върху климатичната регулация.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Tracing carbon exchanges/fluxes between Arctic and Atlantic basins
The Arctic Ocean (AO) is of great importance for climate regulation and carbon sequestration, contributing 5–14% to the global balance of CO2 sinks and sources. It is surrounded by land, with limited exchanges with its adjacent basins, the Atlantic (through the Fram Strait and Canadian Arctic Archipelago) and Pacific (through the Bering Strait) Oceans and great part of the Arctic outflow is exported through the Fram Strait. It is a unique ocean basin compared to the others, given the high loads of freshwater and dissolved organic matter (DOM) supplied by the Arctic Rivers. DOM is a large active Arctic organic carbon reservoir representing more than 95% of the organic carbon in the water and encompasses a wide range of compounds with variable molecular complexity, whose relative contribution varies in different environments, depending on its origin. The Arctic environment is experiencing the brunt of global warming with the largest regional increases in atmospheric temperature (two- or three-fold the global average rate). This implies drastic reductions in summer sea-ice extent and enhanced glacier and ice sheet melt and permafrost thaw. This, in turn, leads to changes in freshwater export, production of DOM in river catchments and riverine transport of organic material into the Arctic seas. Studies on DOM in the region are needed for establishing current conditions and documenting coming changes propagating from river basins to the Arctic Ocean. However, given their difficult access, it is imperative to develop equipment and techniques for autonomously monitoring DOM in the remote Arctic Seas to accurately determine the fate and impact of mobilized carbon. CarbEx employs spectroscopy measurements (e.g., absorption and fluorescence) and chemometrical data analysis combined to numerical modeling to assess and characterize the export of freshwater and dissolved organic matter (in terms of dissolved organic carbon–DOC) from the Arctic to the Atlantic Ocean through the Fram Strait. The major findings (so far) of the project are that we can use FDOM to distinguish freshwater originated from the Eurasian and Canadian basins. We have also developed two methods within the project: one algorithm to estimate DOC concentrations from CDOM spectral properties and one method to estimate Arctic DOC export from moored platforms in the East Greenland Current. Project participants have also taken part in two reports with recommendations for Arctic research and sustainability in the context of the UN Ocean Decade for Sustainable Development and the European Polar Science Week. The project has also focused on communication, and we have submitted a manuscript for publication in Frontiers for Young Minds, where we aim to attract students to the field of marine sciences.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Dissolved organic matter (DOM) consists of a complex mixture of molecules generated from the degradation of living organisms. Surface waters of the Arctic Ocean (AO) have high concentrations of DOM and freshwater (FW) due to the massive supply from large rivers. Great part of it is exported to the Atlantic Ocean through the Fram Strait (FS). Climate change is expected to increase riverine FW and terrestrial DOM supply, with consequences to the hydrological and carbon cycles. However, such changes remain poorly understood and CarbEx will contribute to rectifying this. The three central goals are to (1) estimate the DOM and FW fluxes from the Arctic to the Atlantic Ocean through the FS, (2) assess their variability and (3) develop an approach to assess the amount of both terrestrial DOM and FW, from optical measurements of DOM. A major challenge is to obtain sufficient data from the region and CarbEx will apply three complementary approaches: oceanographic expeditions (OE), ocean color remote sensing (OCRS, satellite-based Earth Observation) and numerical modelling (NM). Riverine FW and DOC fluxes will be estimated using a combination of observations and NM. Hydrographic and biogeochemical data acquired during a series of OE conducted annually in the FS (Summer 2009–2018) is available. The in situ data will be complemented with OCRS and NM to develop a continuous time series, filling the temporal coverage gaps from OE, to analyse possible trends and links to climate change in the Arctic. CarbEx also has a non-academic character and will provide the necessary foundation to develop new technologies to monitor the FW and carbon dynamics in the AO and aquaculture sites, i.e. in situ multi-channel fluorometers. This aligns with the host’s strategy to develop observational technology and Arctic research, and with the EU’s goal for the IF programme about stimulating the creative and innovative potential through advanced training and international and intersectoral mobility.
Оригинален текст от CORDIS (на английски).
Участници
- DANMARKS TEKNISKE UNIVERSITET · Kongens LyngbyКоординаторДания
Връзки
- Виж в CORDIS
- DOI: 10.3030/839311
- https://orbit.dtu.dk/en/projects/tracing-carbon-exchangesfluxes-between-arctic-and-atlantic-basins-2
Данни: CORDIS, © Европейски съюз
