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Fluxes of carbon and nutrients to the Iceland Sea surface layer and inferred primary productivity and stoichiometry

机译:碳和营养物向冰岛海表层的通量,并推断出初级生产力和化学计量

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This study evaluates long-term mean fluxes of carbon and nutrients to the upper 100m of the Iceland Sea. The study utilises hydro-chemical data from the Iceland Sea time series station (68.00 degrees N, 12.67 degrees W), for the years between 1993 and 2006. By comparing data of dissolved inorganic carbon (DIC) and nutrients in the surface layer (upper 100 m), and a sub-surface layer (100-200 m), we calculate monthly deficits in the surface, and use these to deduce the long-term mean surface layer fluxes that affect the deficits: vertical mixing, horizontal advection, air-sea exchange, and biological activity. The deficits show a clear seasonality with a minimum in winter, when the mixed layer is at the deepest, and a maximum in early autumn, when biological uptake has removed much of the nutrients. The annual vertical fluxes of DIC and nitrate amounts to 2.9 +/- 0.5 and 0.45 +/- 0.09 mol m(-2) yr(-1), respectively, and the annual air-sea uptake of atmospheric CO2 is 4.4 +/- 1.1 mol C m(-2) yr(-1). The biologically driven changes in DIC during the year relates to net community production (NCP), and the net annual NCP corresponds to export production, and is here calculated as 7.3 +/- 1.0 mol C m(-2) yr(-1). The typical, median C : N ratio during the period of net community uptake is 9.0, and clearly higher than the Redfield ratio, but is varying during the season.
机译:这项研究评估了碳和养分向冰岛海上部100m的长期平均通量。该研究利用了冰岛海时间序列站(1993年至2006年,北纬68.00度,西经12.67度)的水化学数据。通过比较表层(上层)中的可溶性无机碳(DIC)和养分的数据100 m)和一个地下表层(100-200 m),我们计算表面的月度赤字,并使用这些来推导影响赤字的长期平均表层通量:垂直混合,水平对流,空气海交换和生物活性。赤字显示出明显的季节变化,冬季最低,混合层最深,冬季最低,当生物吸收去除了大部分营养后,秋季最高。 DIC和硝酸盐的年垂直通量分别为2.9 +/- 0.5和0.45 +/- 0.09 mol m(-2)yr(-1),大气中的CO2的年空气海吸收量为4.4 +/- 1.1摩尔C m(-2)yr(-1)。年内DIC的生物驱动变化与净社区生产(NCP)相关,净年度NCP与出口生产相对应,此处计算为7.3 +/- 1.0 mol C m(-2)yr(-1) 。净群落吸收期间典型的中位数C:N比为9.0,明显高于Redfield比,但在季节中有所不同。

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