4.7 Article

Relaxation of Wind Stress Drives the Abrupt Onset of Biological Carbon Uptake in the Kerguelen Bloom: A Multisensor Approach

期刊

GEOPHYSICAL RESEARCH LETTERS
卷 47, 期 9, 页码 -

出版社

AMER GEOPHYSICAL UNION
DOI: 10.1029/2019GL085992

关键词

onset of the phytoplankton bloom; mixing-layer depth; in situ high-resolution data; mixed-layer depth; air-sea heat flux; wind stress

资金

  1. Climate Initiative of the foundation BNP Paribas
  2. French research program LEFE-CYBER of INSU-CNRS
  3. IPEV
  4. Sorbonne Universite
  5. Flotte Oceanographique Francaise
  6. EU FP7 Carbochange project [264879]
  7. remOcean project - European Research Council [246777]
  8. European Research Council under the European Union's Horizon 2020 research and innovation program [637770]
  9. Australian Research Council [160103130]
  10. Earth Systems and Climate Change Hub of the Australian government's National Environmental Science Program
  11. European Research Council (ERC) [637770, 246777] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

We deployed sensors for physical and biogeochemical measurements on one Eulerian mooring and two Lagrangian biogeochemical Argo floats on the Kerguelen Plateau. High temporal and vertical resolution measurements revealed an abrupt shoaling of both the mixed-layer depth and mixing-layer depth. The sudden stratification was concomitant with the start of significant biological activity detected by chlorophyll-a accumulation, oxygen oversaturation, and dissolved inorganic carbon drawdown. The net community production computed in the mixing-layer during the onset period of 9 days was 119 +/- 7 mmol center dot m(-2)center dot day(-1). While it is generally admitted that bloom initiation is mostly driven by the onset of positive heat fluxes, our results suggest that this is not a sufficient condition. Here we report that the decrease in the depth over which wind mixes the upper layer drives the initiation of the bloom. These results suggest that future atmospheric changes in Southern Ocean could impact the phenology of the blooms.

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