The MALINA oceanographic expedition : how do changes in ice cover, permafrost and UV radiation impact biodiversity and biogeochemical fluxes in the Arctic Ocean?

The MALINA oceanographic campaign was conducted during summer 2009 to investigate the carbon stocks and the processes controlling the carbon fluxes in the Mackenzie River estuary and the Beaufort Sea. During the campaign, an extensive suite of physical, chemical and biological variables were measure...

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Main Authors: Massicotte, P., Amon, R. M. W., Antoine, D., Archambault, P., Balzano, S., Bélanger, S., Benner, R., Boeuf, D., Bricaud, A., Bruyant, F., Chaillou, G., Chami, M., Charrière, B., Chen, J., Claustre, H., Coupel, P., Delsaut, N., Doxaran, D., Ehn, J., Fichot, C., Forget, M. H., Fu, P., Gagnon, J., Garcia, N., Gasser, B., Ghiglione, J. F., Gorsky, G., Gosselin, M., Gourvil, P., Gratton, Y., Guillot, P., Heipieper, H. J., Heussner, S., Hooker, S. B., Huot, Y., Jeanthon, C., Jeffrey, W., Joux, F., Kawamura, K., Lansard, B., Leymarie, E., Link, H., Lovejoy, C., Marec, C., Marie, D., Martin, J., Martín, J., Massé, G., Matsuoka, A., McKague, V., Mignot, A., Miller, W. L., Miquel, J. C., Mucc,i A., Ono, K., Ortega-Retuerta, E., Panagiotopoulos, C., Papakyriakou, T., Picheral, M., Prieu,r L., Raimbault, P., Ras, J., Reynolds, R. A., Rochon, A., Rontani, J. F., Schmechtig, C., Schmidt, S., Sempéré, R., Shen, Y., Song, G., Stramski, D., Tachibana, E., Thirouard, A., Tolosa, I., Tremblay, J. E., Vaïtilingom, M., Vaulot, Daniel, Vaultier, F., Volkman, J. K., Xie, H., Zheng, G., Babin, M.
Other Authors: Asian School of the Environment
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Language:English
Published: 2021
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Online Access:https://hdl.handle.net/10356/153603
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1536032023-02-28T16:42:36Z The MALINA oceanographic expedition : how do changes in ice cover, permafrost and UV radiation impact biodiversity and biogeochemical fluxes in the Arctic Ocean? Massicotte, P. Amon, R. M. W. Antoine, D. Archambault, P. Balzano, S. Bélanger, S. Benner, R. Boeuf, D. Bricaud, A. Bruyant, F. Chaillou, G. Chami, M. Charrière, B. Chen, J. Claustre, H. Coupel, P. Delsaut, N. Doxaran, D. Ehn, J. Fichot, C. Forget, M. H. Fu, P. Gagnon, J. Garcia, N. Gasser, B. Ghiglione, J. F. Gorsky, G. Gosselin, M. Gourvil, P. Gratton, Y. Guillot, P. Heipieper, H. J. Heussner, S. Hooker, S. B. Huot, Y. Jeanthon, C. Jeffrey, W. Joux, F. Kawamura, K. Lansard, B. Leymarie, E. Link, H. Lovejoy, C. Marec, C. Marie, D. Martin, J. Martín, J. Massé, G. Matsuoka, A. McKague, V. Mignot, A. Miller, W. L. Miquel, J. C. Mucc,i A. Ono, K. Ortega-Retuerta, E. Panagiotopoulos, C. Papakyriakou, T. Picheral, M. Prieu,r L. Raimbault, P. Ras, J. Reynolds, R. A. Rochon, A. Rontani, J. F. Schmechtig, C. Schmidt, S. Sempéré, R. Shen, Y. Song, G. Stramski, D. Tachibana, E. Thirouard, A. Tolosa, I. Tremblay, J. E. Vaïtilingom, M. Vaulot, Daniel Vaultier, F. Volkman, J. K. Xie, H. Zheng, G. Babin, M. Asian School of the Environment Science::Geology Temperature Rise Permafrost Thawing The MALINA oceanographic campaign was conducted during summer 2009 to investigate the carbon stocks and the processes controlling the carbon fluxes in the Mackenzie River estuary and the Beaufort Sea. During the campaign, an extensive suite of physical, chemical and biological variables were measured across seven shelf basin transects (south north) to capture the meridional gradient between the estuary and the open ocean. Key variables such as temperature, absolute salinity, radiance, irradiance, nutrient concentrations, chlorophyll a concentration, bacteria, phytoplankton and zooplankton abundance and taxonomy, and carbon stocks and fluxes were routinely measured onboard the Canadian research icebreaker CCGS Amundsen and from a barge in shallow coastal areas or for sampling within broken ice fields. Here, we present the results of a joint effort to compile and standardize the collected data sets that will facilitate their reuse in further studies of the changing Arctic Ocean. Published version This study was conducted as part of the Malina scientific program funded by ANR (Agence Nationale de la Recherche), INSU-CNRS (Institut National des Sciences de l’Univers - Centre National de la Recherche Scientifique), the LEFE-CYBER program, CNES (Centre National d’Études Spatiales), the European Commission (Marie Skłodowska-Curie Actions), ESA (European Space Agency) and ArcticNet. US NSF grants 0713915 and 1504137 to Ronal Banner and 0229302, 0425582, 0713991 to Rainer M. W. Amon. US NASA (grant no. NNX07AR20G) awarded to Rick A. Reynolds and Dariusz Stramski. Natural Science and Engineerinng Council (Canada) Discovery and Northern supplement to Connie Lovejoy. 2021-12-14T07:13:36Z 2021-12-14T07:13:36Z 2021 Journal Article Massicotte, P., Amon, R. M. W., Antoine, D., Archambault, P., Balzano, S., Bélanger, S., Benner, R., Boeuf, D., Bricaud, A., Bruyant, F., Chaillou, G., Chami, M., Charrière, B., Chen, J., Claustre, H., Coupel, P., Delsaut, N., Doxaran, D., Ehn, J., ...Babin, M. (2021). The MALINA oceanographic expedition : how do changes in ice cover, permafrost and UV radiation impact biodiversity and biogeochemical fluxes in the Arctic Ocean?. Earth System Science Data, 13(4), 1561-1592. https://dx.doi.org/10.5194/essd-13-1561-2021 1866-3508 https://hdl.handle.net/10356/153603 10.5194/essd-13-1561-2021 2-s2.0-85104208103 4 13 1561 1592 en Earth System Science Data © 2021 Author(s). This work is distributed under the Creative Commons Attribution 4.0 License. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Geology
Temperature Rise
Permafrost Thawing
spellingShingle Science::Geology
Temperature Rise
Permafrost Thawing
Massicotte, P.
Amon, R. M. W.
Antoine, D.
Archambault, P.
Balzano, S.
Bélanger, S.
Benner, R.
Boeuf, D.
Bricaud, A.
Bruyant, F.
Chaillou, G.
Chami, M.
Charrière, B.
Chen, J.
Claustre, H.
Coupel, P.
Delsaut, N.
Doxaran, D.
Ehn, J.
Fichot, C.
Forget, M. H.
Fu, P.
Gagnon, J.
Garcia, N.
Gasser, B.
Ghiglione, J. F.
Gorsky, G.
Gosselin, M.
Gourvil, P.
Gratton, Y.
Guillot, P.
Heipieper, H. J.
Heussner, S.
Hooker, S. B.
Huot, Y.
Jeanthon, C.
Jeffrey, W.
Joux, F.
Kawamura, K.
Lansard, B.
Leymarie, E.
Link, H.
Lovejoy, C.
Marec, C.
Marie, D.
Martin, J.
Martín, J.
Massé, G.
Matsuoka, A.
McKague, V.
Mignot, A.
Miller, W. L.
Miquel, J. C.
Mucc,i A.
Ono, K.
Ortega-Retuerta, E.
Panagiotopoulos, C.
Papakyriakou, T.
Picheral, M.
Prieu,r L.
Raimbault, P.
Ras, J.
Reynolds, R. A.
Rochon, A.
Rontani, J. F.
Schmechtig, C.
Schmidt, S.
Sempéré, R.
Shen, Y.
Song, G.
Stramski, D.
Tachibana, E.
Thirouard, A.
Tolosa, I.
Tremblay, J. E.
Vaïtilingom, M.
Vaulot, Daniel
Vaultier, F.
Volkman, J. K.
Xie, H.
Zheng, G.
Babin, M.
The MALINA oceanographic expedition : how do changes in ice cover, permafrost and UV radiation impact biodiversity and biogeochemical fluxes in the Arctic Ocean?
description The MALINA oceanographic campaign was conducted during summer 2009 to investigate the carbon stocks and the processes controlling the carbon fluxes in the Mackenzie River estuary and the Beaufort Sea. During the campaign, an extensive suite of physical, chemical and biological variables were measured across seven shelf basin transects (south north) to capture the meridional gradient between the estuary and the open ocean. Key variables such as temperature, absolute salinity, radiance, irradiance, nutrient concentrations, chlorophyll a concentration, bacteria, phytoplankton and zooplankton abundance and taxonomy, and carbon stocks and fluxes were routinely measured onboard the Canadian research icebreaker CCGS Amundsen and from a barge in shallow coastal areas or for sampling within broken ice fields. Here, we present the results of a joint effort to compile and standardize the collected data sets that will facilitate their reuse in further studies of the changing Arctic Ocean.
author2 Asian School of the Environment
author_facet Asian School of the Environment
Massicotte, P.
Amon, R. M. W.
Antoine, D.
Archambault, P.
Balzano, S.
Bélanger, S.
Benner, R.
Boeuf, D.
Bricaud, A.
Bruyant, F.
Chaillou, G.
Chami, M.
Charrière, B.
Chen, J.
Claustre, H.
Coupel, P.
Delsaut, N.
Doxaran, D.
Ehn, J.
Fichot, C.
Forget, M. H.
Fu, P.
Gagnon, J.
Garcia, N.
Gasser, B.
Ghiglione, J. F.
Gorsky, G.
Gosselin, M.
Gourvil, P.
Gratton, Y.
Guillot, P.
Heipieper, H. J.
Heussner, S.
Hooker, S. B.
Huot, Y.
Jeanthon, C.
Jeffrey, W.
Joux, F.
Kawamura, K.
Lansard, B.
Leymarie, E.
Link, H.
Lovejoy, C.
Marec, C.
Marie, D.
Martin, J.
Martín, J.
Massé, G.
Matsuoka, A.
McKague, V.
Mignot, A.
Miller, W. L.
Miquel, J. C.
Mucc,i A.
Ono, K.
Ortega-Retuerta, E.
Panagiotopoulos, C.
Papakyriakou, T.
Picheral, M.
Prieu,r L.
Raimbault, P.
Ras, J.
Reynolds, R. A.
Rochon, A.
Rontani, J. F.
Schmechtig, C.
Schmidt, S.
Sempéré, R.
Shen, Y.
Song, G.
Stramski, D.
Tachibana, E.
Thirouard, A.
Tolosa, I.
Tremblay, J. E.
Vaïtilingom, M.
Vaulot, Daniel
Vaultier, F.
Volkman, J. K.
Xie, H.
Zheng, G.
Babin, M.
format Article
author Massicotte, P.
Amon, R. M. W.
Antoine, D.
Archambault, P.
Balzano, S.
Bélanger, S.
Benner, R.
Boeuf, D.
Bricaud, A.
Bruyant, F.
Chaillou, G.
Chami, M.
Charrière, B.
Chen, J.
Claustre, H.
Coupel, P.
Delsaut, N.
Doxaran, D.
Ehn, J.
Fichot, C.
Forget, M. H.
Fu, P.
Gagnon, J.
Garcia, N.
Gasser, B.
Ghiglione, J. F.
Gorsky, G.
Gosselin, M.
Gourvil, P.
Gratton, Y.
Guillot, P.
Heipieper, H. J.
Heussner, S.
Hooker, S. B.
Huot, Y.
Jeanthon, C.
Jeffrey, W.
Joux, F.
Kawamura, K.
Lansard, B.
Leymarie, E.
Link, H.
Lovejoy, C.
Marec, C.
Marie, D.
Martin, J.
Martín, J.
Massé, G.
Matsuoka, A.
McKague, V.
Mignot, A.
Miller, W. L.
Miquel, J. C.
Mucc,i A.
Ono, K.
Ortega-Retuerta, E.
Panagiotopoulos, C.
Papakyriakou, T.
Picheral, M.
Prieu,r L.
Raimbault, P.
Ras, J.
Reynolds, R. A.
Rochon, A.
Rontani, J. F.
Schmechtig, C.
Schmidt, S.
Sempéré, R.
Shen, Y.
Song, G.
Stramski, D.
Tachibana, E.
Thirouard, A.
Tolosa, I.
Tremblay, J. E.
Vaïtilingom, M.
Vaulot, Daniel
Vaultier, F.
Volkman, J. K.
Xie, H.
Zheng, G.
Babin, M.
author_sort Massicotte, P.
title The MALINA oceanographic expedition : how do changes in ice cover, permafrost and UV radiation impact biodiversity and biogeochemical fluxes in the Arctic Ocean?
title_short The MALINA oceanographic expedition : how do changes in ice cover, permafrost and UV radiation impact biodiversity and biogeochemical fluxes in the Arctic Ocean?
title_full The MALINA oceanographic expedition : how do changes in ice cover, permafrost and UV radiation impact biodiversity and biogeochemical fluxes in the Arctic Ocean?
title_fullStr The MALINA oceanographic expedition : how do changes in ice cover, permafrost and UV radiation impact biodiversity and biogeochemical fluxes in the Arctic Ocean?
title_full_unstemmed The MALINA oceanographic expedition : how do changes in ice cover, permafrost and UV radiation impact biodiversity and biogeochemical fluxes in the Arctic Ocean?
title_sort malina oceanographic expedition : how do changes in ice cover, permafrost and uv radiation impact biodiversity and biogeochemical fluxes in the arctic ocean?
publishDate 2021
url https://hdl.handle.net/10356/153603
_version_ 1759858297258639360