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The effect of biological activity, CaCO3 mineral dynamics, and CO2 degassing in the inorganic carbon cycle in sea ice in late winter-early spring in the Weddell Sea, Antarctica

机译:生物活性碳酸钙矿物动态,及水 - 气中的无机碳循环中的海冰在晚冬,早春在威德尔海,南极的影响

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摘要

A large-scale geographical study of the ice pack in the seasonal ice zone of the Weddell Sea, Antarctica, took place from September to October 2006. Sea ice brines with a salinity greater than 58 and temperature lower than -3.6oC were sampled from 22 ice stations. The brines had large deficits in total alkalinity and in the concentrations of the major dissolved macronutrients (total dissolved inorganic carbon, nitrate, and soluble reactive phosphorus) relative to their concentrations in the surface oceanic water and conservative behaviour during seawater freezing. The concentration deficits were related to the dissolved inorganic carbon-consuming processes of photosynthesis, CaCO3 precipitation, and CO2 degassing. The largest concentration deficits in total dissolved inorganic carbon were found to be associated with CaCO3 precipitation and CO2 degassing, because the magnitude of the photosynthesis-induced concentration deficit in total dissolved inorganic carbon is controlled by the size of the inorganic nutrient pool, which can be limited in sea ice by its openness to exchange with the surrounding oceanic water.
机译:2006年9月至2006年10月,对南极韦德海的季节性冰区中的冰袋进行了大规模的地理研究。盐度大于58,温度低于-3.6oC的海冰盐水从22个采样点中取样。冰站。相对于其在地表海洋水中的浓度和海水冻结期间的保守行为,盐水的总碱度和主要溶解的大量常量营养素(总溶解的无机碳,硝酸盐和可溶性反应性磷)的浓度有很大的不足。浓度不足与光合作用的溶解无机碳消耗过程,CaCO3沉淀和CO2脱气有关。发现总溶解无机碳中最大的浓度亏缺与CaCO3沉淀和CO2脱气有关,因为光合作用引起的总溶解无机碳中的浓度亏缺的大小受无机养分池的大小控制,可以由于其与周围海洋水交换的开放性而受到海冰的限制。

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