首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >A physicochemical framework for interpreting the biological calcification response to CO_2-induced ocean acidification
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A physicochemical framework for interpreting the biological calcification response to CO_2-induced ocean acidification

机译:一个物理化学框架,用于解释对CO_2诱导的海洋酸化的生物钙化反应

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摘要

A generalized physicochemical model of the response of marine organisms' calcifying fluids to CO_2-induced ocean acidification is proposed. The model is based upon the hypothesis that some marine calcifiers induce calcification by elevating pH, and thus ΩA, of their calcifying fluid by removing protons (H~+). The model is explored through two end-member scenarios: one in which a fixed number of H~+ is removed from the calcifying fluid, regardless of atmospheric pCO_2, and another in which a fixed external-internal H~+ ratio ([H~+]E/[H~+]I) is maintained. The model is able to generate the full range of calcification response patterns observed in prior ocean acidification experiments and is consistent with the assertion that organisms' calcification response to ocean acidification is more negative for marine calcifiers that exert weaker control over their calcifying fluid pH. The model is empirically evaluated for the temperate scleractinian coral Astrangia poculata with in situ pH microelectrode measurements of the coral's calcifying fluid under control and acidified conditions. These measurements reveal that (1) the pH of the coral's calcifying fluid is substantially elevated relative to its external seawater under both control and acidified conditions, (2) the coral's [H~+]E/[H~+]I is approximately the same under control and acidified conditions, and (3) the coral removes fewer H~+ from its calcifying fluid under acidified conditions than under control conditions. Thus, the carbonate system dynamics of A. poculata's calcifying fluid appear to be most consistent with the fixed [H~+]E/[H~+]I end-member scenario. Similar microelectrode experiments performed on additional taxa are required to assess the model's general applicability.
机译:提出了海洋生物钙化液对CO_2诱导的海洋酸化反应的广义理化模型。该模型基于以下假设:一些海洋钙化剂通过去除质子(H〜+)来提高其钙化液的pH值,从而导致ΩA引起钙化。该模型是通过两种最终成员情况进行探索的:一种是从钙化流体中除去固定数量的H〜+,而与大气pCO_2无关,另一种是固定的内外H〜+比率([H〜 +] E / [H〜+] I)被维持。该模型能够生成在以前的海洋酸化实验中观察到的全部钙化响应模式,并且与以下观点相一致:生物对海洋酸化的钙化响应对于海洋钙化器更为不利,而海洋钙化器对钙化液pH值的控制较弱。通过在控制和酸化条件下对珊瑚钙化液的原位pH微电极测量,对温带刀鞘珊瑚Astrangia poculata进行了经验评估。这些测量结果表明,(1)在控制和酸化条件下,珊瑚钙化液的pH值均相对于其外部海水显着升高;(2)珊瑚的[H〜+] E / [H〜+] I大约为(3)在酸化条件下,珊瑚从钙化液中去除的H〜+量少于在控制条件下。因此,A。poculata钙化流体的碳酸盐系统动力学似乎与固定的[H〜+] E / [H〜+] I端成员场景最一致。需要在其他分类单元上进行类似的微电极实验,以评估模型的一般适用性。

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