Sea‐air exchange patterns along the central and outer East Siberian Arctic Shelf as inferred from continuous CO2, stable isotope, and bulk chemistry measurements. Issue 7 (28th July 2017)
- Record Type:
- Journal Article
- Title:
- Sea‐air exchange patterns along the central and outer East Siberian Arctic Shelf as inferred from continuous CO2, stable isotope, and bulk chemistry measurements. Issue 7 (28th July 2017)
- Main Title:
- Sea‐air exchange patterns along the central and outer East Siberian Arctic Shelf as inferred from continuous CO2, stable isotope, and bulk chemistry measurements
- Authors:
- Humborg, Christoph
Geibel, Marc C.
Anderson, Leif G.
Björk, Göran
Mörth, Carl‐Magnus
Sundbom, Marcus
Thornton, Brett F.
Deutsch, Barbara
Gustafsson, Erik
Gustafsson, Bo
Ek, Jörgen
Semiletov, Igor - Abstract:
- Abstract: This large‐scale quasi‐synoptic study gives a comprehensive picture of sea‐air CO2 fluxes during the melt season in the central and outer Laptev Sea (LS) and East Siberian Sea (ESS). During a 7 week cruise we compiled a continuous record of both surface water and air CO2 concentrations, in total 76, 892 measurements. Overall, the central and outer parts of the ESAS constituted a sink for CO2, and we estimate a median uptake of 9.4 g C m −2 yr −1 or 6.6 Tg C yr −1 . Our results suggest that while the ESS and shelf break waters adjacent to the LS and ESS are net autotrophic systems, the LS is a net heterotrophic system. CO2 sea‐air fluxes for the LS were 4.7 g C m −2 yr −1, and for the ESS we estimate an uptake of 7.2 g C m −2 yr −1 . Isotopic composition of dissolved inorganic carbon (δ 13 CDIC and δ 13 CCO2 ) in the water column indicates that the LS is depleted in δ 13 CDIC compared to the Arctic Ocean (ArcO) and ESS with an offset of 0.5‰ which can be explained by mixing of δ 13 CDIC ‐depleted riverine waters and 4.0 Tg yr −1 respiration of OCter ; only a minor part (0.72 Tg yr −1 ) of this respired OCter is exchanged with the atmosphere. Property‐mixing diagrams of total organic carbon and isotope ratio (δ 13 CSPE‐DOC ) versus dissolved organic carbon (DOC) concentration diagram indicate conservative and nonconservative mixing in the LS and ESS, respectively. We suggest land‐derived particulate organic carbon from coastal erosion as an additional significantAbstract: This large‐scale quasi‐synoptic study gives a comprehensive picture of sea‐air CO2 fluxes during the melt season in the central and outer Laptev Sea (LS) and East Siberian Sea (ESS). During a 7 week cruise we compiled a continuous record of both surface water and air CO2 concentrations, in total 76, 892 measurements. Overall, the central and outer parts of the ESAS constituted a sink for CO2, and we estimate a median uptake of 9.4 g C m −2 yr −1 or 6.6 Tg C yr −1 . Our results suggest that while the ESS and shelf break waters adjacent to the LS and ESS are net autotrophic systems, the LS is a net heterotrophic system. CO2 sea‐air fluxes for the LS were 4.7 g C m −2 yr −1, and for the ESS we estimate an uptake of 7.2 g C m −2 yr −1 . Isotopic composition of dissolved inorganic carbon (δ 13 CDIC and δ 13 CCO2 ) in the water column indicates that the LS is depleted in δ 13 CDIC compared to the Arctic Ocean (ArcO) and ESS with an offset of 0.5‰ which can be explained by mixing of δ 13 CDIC ‐depleted riverine waters and 4.0 Tg yr −1 respiration of OCter ; only a minor part (0.72 Tg yr −1 ) of this respired OCter is exchanged with the atmosphere. Property‐mixing diagrams of total organic carbon and isotope ratio (δ 13 CSPE‐DOC ) versus dissolved organic carbon (DOC) concentration diagram indicate conservative and nonconservative mixing in the LS and ESS, respectively. We suggest land‐derived particulate organic carbon from coastal erosion as an additional significant source for the depleted δ 13 CDIC . Key Points: During a 7 week cruise we compiled a continuous record of both surface water and air CO2 concentrations, in total 76, 892 measurements The East Siberian Arctic Shelf constituted a sink for CO2, and we estimate a median uptake of 9.4 g C m −2 yr −1 or 6.6 Tg C yr −1 We suggest land‐derived particulate organic carbon (POC) from coastal erosion as an additional significant source for the depleted δ 13 CDIC … (more)
- Is Part Of:
- Global biogeochemical cycles. Volume 31:Issue 7(2017:Jul.)
- Journal:
- Global biogeochemical cycles
- Issue:
- Volume 31:Issue 7(2017:Jul.)
- Issue Display:
- Volume 31, Issue 7 (2017)
- Year:
- 2017
- Volume:
- 31
- Issue:
- 7
- Issue Sort Value:
- 2017-0031-0007-0000
- Page Start:
- 1173
- Page End:
- 1191
- Publication Date:
- 2017-07-28
- Subjects:
- carbon -- climate change -- Siberian Shelf -- respiration -- air‐sea flux -- carbon isotope
Biogeochemical cycles -- Periodicals
Electronic journals
577.1405 - Journal URLs:
- http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1944-9224 ↗
http://www.agu.org/journals/gb/ ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1002/2017GB005656 ↗
- Languages:
- English
- ISSNs:
- 0886-6236
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 4195.352000
British Library DSC - BLDSS-3PM
British Library HMNTS - ELD Digital store - Ingest File:
- 2945.xml