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Chemical modeling of marine trace metals: Effects of ocean acidification to marine ecosystem

机译:海洋微量金属的化学模型:海洋酸化对海洋生态系统的影响

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Chemical thermodynamic model is introduced to evaluate ecological effects of ocean acidification, which is predicted from increasing ocean uptake of carbon dioxide. The chemical model contains metal complex formation with two types of dissolved organic ligands in seawater. Concentration responses of copper and iron species in seawater to pH decrease were simulated. Free copper ion concentration, whose level is closely related to toxicity to phytoplankton, shows no response to ocean acidification as buffering effects by organic ligands. Ocean acidification leads to increase of bio-available iron (organic iron complex) in seawater, which causes increasing marine primarily production and following export flux of carbon into ocean interior. Chemical model regarding bioactive trace metals suggests presence of a negative feedback to the rising atmospheric CO2.
机译:引入化学热力学模型来评估海洋酸化的生态效应,这是通过增加海洋对二氧化碳的吸收来预测的。化学模型包含在海水中具有两种溶解的有机配体的金属配合物形成。模拟了海水中铜和铁物种对pH降低的浓度响应。游离铜离子浓度与其对浮游植物的毒性密切相关,但由于有机配体的缓冲作用,对海洋酸化没有反应。海洋酸化导致海水中生物可利用铁(有机铁配合物)的增加,这导致海洋主要产量增加以及碳向海洋内部的出口通量增加。关于生物活性痕量金属的化学模型表明存在对大气CO 2 上升的负反馈。

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