首页> 外文期刊>Journal of Asian earth sciences >Distribution coefficients of trace metals between modern coral-lattices and seawater in the northern South China Sea: Species and SST dependencies
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Distribution coefficients of trace metals between modern coral-lattices and seawater in the northern South China Sea: Species and SST dependencies

机译:南海北部现代珊瑚与海水之间痕量金属的分布系数:物种和海表温度依赖性

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摘要

Sderactinian corals provide an excellent archive of geochemical proxies that allow the reconstruction of the oceanographic and climatic changes in the oceans. However, limited knowledge regarding the distribution coefficients (D) of trace metals between coral lattices and seawater has complicated efforts to obtain accurate quantitative data for seawater chemistry. Here we estimated the D values of five trace metals (Cu, Zn, Pb, Cd and Cr) for three coral species (Favia palauensis, Porites lutea, and Pavona decussata) and in situ seawater around Weizhou Island in the northern South China Sea. Despite several variations that could not be explained solely by species, our results were within the approved ranges of the previous reported estimates, and provide the most accurate D values for the these species to date. We also focused on the possible effects of surface seawater temperature (SST) on D vaules, finding no significant relationship. Nevertheless, the effects of SST, which could impact the distribution behavior of trace metals (especially Cd) should be paid more attention in the context of global climate change. The more precise D values for corals provided here represent important basic data for future research on coral reefs and expanded our knowledge of chemical signatures in biogenic lattices with regard to ocean composition.
机译:Sderactinian珊瑚提供了极好的地球化学代理档案,可以重建海洋的海洋学和气候变化。但是,关于痕量金属在珊瑚晶格和海水之间的分布系数(D)的知识有限,为获取准确的海水化学定量数据所做的努力非常复杂。在这里,我们估算了南海北部Wei洲岛周围三种珊瑚物种(青金鱼,Porites lutea和Pavona decussata)和原位海水中五种微量金属(铜,锌,铅,镉和铬)的D值。尽管存在一些无法单独用物种解释的变化,但我们的结果仍在先前报告的估计值的认可范围内,并提供了迄今为止这些物种最准确的D值。我们还关注了地表海水温度(SST)对D胚珠的可能影响,没有发现显着关系。尽管如此,在全球气候变化的背景下,应特别注意可能影响微量金属(尤其是Cd)分布行为的SST效应。此处提供的更精确的D值代表了以后对珊瑚礁进行研究的重要基础数据,并扩展了我们对海洋构成方面生物基质中化学特征的认识。

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