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Article Dans Une Revue Biogeosciences Année : 2016

Coastal-ocean uptake of anthropogenic carbon

Résumé

Anthropogenic changes in atmosphere-ocean and atmosphere-land CO 2 fluxes have been quantified extensively , but few studies have addressed the connection between land and ocean. In this transition zone, the coastal ocean, spatial and temporal data coverage is inadequate to assess its global budget. Thus we use a global ocean biogeo-chemical model to assess the coastal ocean's global inventory of anthropogenic CO 2 and its spatial variability. We used an intermediate resolution, eddying version of the NEMO-PISCES model (ORCA05), varying from 20 to 50 km horizontally , i.e. coarse enough to allow multiple century-scale simulations but finer than coarse-resolution models (∼ 200 km) to better resolve coastal bathymetry and complex coastal currents. Here we define the coastal zone as the continental shelf area, excluding the proximal zone. Evaluation of the simulated air-sea fluxes of total CO 2 for 45 coastal regions gave a correlation coefficient R of 0.8 when compared to observation-based estimates. Simulated global uptake of anthropogenic carbon results averaged 2.3 Pg C yr −1 during the years 1993-2012, consistent with previous estimates. Yet only 0.1 Pg C yr −1 of that is absorbed by the global coastal ocean. That represents 4.5 % of the anthropogenic carbon uptake of the global ocean, less than the 7.5 % proportion of coastal-to-global-ocean surface areas. Coastal uptake is weakened due to a bottleneck in offshore transport, which is inadequate to reduce the mean anthropogenic carbon concentration of coastal waters to the mean level found in the open-ocean mixed layer.
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Dates et versions

hal-01497501 , version 1 (27-10-2020)

Identifiants

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Timothée Bourgeois, James C. Orr, Laure Resplandy, Jens Terhaar, Christian Éthé, et al.. Coastal-ocean uptake of anthropogenic carbon. Biogeosciences, 2016, 13 (14), pp.4167 - 4185. ⟨10.5194/bg-13-4167-2016⟩. ⟨hal-01497501⟩
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