The role of phytoplankton dynamics in the seasonal and interannual variability of carbon in the subpolar North Atlantic - a modeling study

被引:5
|
作者
Signorini, S. R. [1 ,9 ]
Haekkinen, S. [2 ]
Gudmundsson, K. [3 ]
Olsen, A. [4 ,5 ]
Omar, A. M. [4 ,5 ]
Olafsson, J. [3 ,6 ]
Reverdin, G. [7 ]
Henson, S. A. [8 ]
McClain, C. R. [9 ]
Worthen, D. L. [2 ,10 ]
机构
[1] Sci Applicat Int Corp, Beltsville, MD USA
[2] NASA, Goddard Space Flight Ctr, Cryospher Sci Branch, Greenbelt, MD 20771 USA
[3] Marine Res Inst, IS-121 Reykjavik, Iceland
[4] Uni Bjerknes Ctr, N-5007 Bergen, Norway
[5] Bjerknes Ctr Climate Res, N-5007 Bergen, Norway
[6] Univ Iceland, Reykjavik, Iceland
[7] IPSL, Lab Oceanog Dynam & Climatol, F-75252 Paris, France
[8] Natl Oceanog Ctr, Southampton SO14 3ZH, Hants, England
[9] NASA, Goddard Space Flight Ctr, Ocean Ecol Branch, Greenbelt, MD 20771 USA
[10] Wyle Informat Syst Grp, Mclean, VA USA
基金
英国自然环境研究理事会;
关键词
EMILIANIA-HUXLEYI; SEA-ICE; COCCOLITHOPHORE BLOOM; SOLAR IRRADIANCE; ARCTIC-OCEAN; TIME-SERIES; SURFACE; WATERS; CIRCULATION; SILICATE;
D O I
10.5194/gmd-5-683-2012
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
We developed an ecosystem/biogeochemical model system, which includes multiple phytoplankton functional groups and carbon cycle dynamics, and applied it to investigate physical-biological interactions in Icelandic waters. Satellite and in situ data were used to evaluate the model. Surface seasonal cycle amplitudes and biases of key parameters (DIC, TA, pCO(2), air-sea CO2 flux, and nutrients) are significantly improved when compared to surface observations by prescribing deep water values and trends, based on available data. The seasonality of the coccolithophore and 'other phytoplankton' (diatoms and dinoflagellates) blooms is in general agreement with satellite ocean color products. Nutrient supply, biomass and calcite concentrations are modulated by light and mixed layer depth seasonal cycles. Diatoms are the most abundant phytoplankton, with a large bloom in early spring and a secondary bloom in fall. The diatom bloom is followed by blooms of dinoflagellates and coccolithophores. The effect of biological changes on the seasonal variability of the surface ocean pCO(2) is nearly twice the temperature effect, in agreement with previous studies. The inclusion of multiple phytoplankton functional groups in the model played a major role in the accurate representation of CO2 uptake by biology. For instance, at the peak of the bloom, the exclusion of coccolithophores causes an increase in alkalinity of up to 4 mu mol kg(-1) with a corresponding increase in DIC of up to 16 mu mol kg(-1). During the peak of the bloom in summer, the net effect of the absence of the coccolithophores bloom is an increase in pCO(2) of more than 20 mu atm and a reduction of atmospheric CO2 uptake of more than 6 mmol m(-2) d(-1). On average, the impact of coccolithophores is an increase of air-sea CO2 flux of about 27%. Considering the areal extent of the bloom from satellite images within the Irminger and Icelandic Basins, this reduction translates into an annual mean of nearly 1500 tonnes C yr(-1).
引用
收藏
页码:683 / 707
页数:25
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