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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Impact of anthropogenic Pb and ocean circulation on the recent distribution of Pb isotopes in the Indian Ocean
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Impact of anthropogenic Pb and ocean circulation on the recent distribution of Pb isotopes in the Indian Ocean

机译:人为铅和海洋环流对印度洋铅同位素最新分布的影响

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Pb and Pb isotope ratios in the modern ocean have been altered significantly by anthropogenic Pb inputs over the past century. Most studies of anthropogenic Pb in the ocean have focused on the North Atlantic and North Pacific Oceans, and the impact of anthropogenic Pb inputs to the Indian Ocean and processes controlling the distribution of Pb in the Indian Ocean are poorly known. This study presents the Pb and Pb isotopic composition (Pb-206/Pb-207, Pb-208/Pb-207) of 11 deep stations from the Indian Ocean Japanese GEOTRACES cruise (KH-09-5), from the Bay of Bengal and Arabian Sea to the Southern Ocean (62 degrees S). The Pb isotope ratios of the Indian Ocean range 1.140-1.190 for Pb-206/Pb-207 and 2.417-2.468 for Pb-208/Pb-207, with lower ratios appearing in the shallow waters of the northern Indian Ocean and higher ratios appearing in the deep layers of the Southern Ocean. This result agrees with a previous study on Pb concentrations (Echegoyen et al., 2014) showing that the Indian Ocean, particularly its northern part, is largely perturbed by anthropogenic Pb inputs. Pb-206/Pb-207 and Pb-208/Pb-207 of the Indian sector Southern Ocean are still lower than natural Pb, showing this region was also affected by anthropogenic Pb. Anomalously low or high Pb-206/Pb-207 and Pb-208/Pb-207 were observed in the thermocline and shallow waters of the southern Indian Ocean and the Arabian Sea, which are ascribed to water mass distribution (e.g., Subantarctic Mode Water) and evolving Pb isotope ratios of this region as dominant anthropogenic Pb sources change. Pb-206/Pb-207 and Pb-208/Pb-207 in the Bay of Bengal are higher than those in the Arabian Sea, which might be the result of the anthropogenic Pb inputs from different provenance or seawater exchanging Pb isotopes with natural particles derived from rivers and/or sediments at the basin boundaries. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在过去的一个世纪中,人为的铅投入大大改变了现代海洋中的铅和铅同位素比。海洋中有关人为铅的大多数研究都集中在北大西洋和北太平洋,而人为铅对印度洋的影响以及控制铅在印度洋中分布的过程知之甚少。这项研究提出了来自印度洋日本GEOTRACES航行(KH-09-5),来自孟加拉湾的11个深水站的Pb和Pb同位素组成(Pb-206 / Pb-207,Pb-208 / Pb-207)阿拉伯海至南大洋(南纬62度)。印度洋的Pb-206 / Pb-207的铅同位素比为1.140-1.190,Pb-208 / Pb-207的Pb同位素比为2.417-2.468,印度洋北部的浅水比值较低,而印度比索的比值较高。在南大洋的深层。该结果与先前对铅浓度的研究(Echegoyen等人,2014)相吻合,该研究表明,印度洋,特别是其北部,很大程度上受到人为铅输入的干扰。印度洋南部海洋的Pb-206 / Pb-207和Pb-208 / Pb-207仍低于天然Pb,表明该地区也受到人为Pb的影响。在印度洋南部和阿拉伯海的温跃层和浅水区观察到Pb-206 / Pb-207和Pb-208 / Pb-207异常低或高,这归因于水的质量分布(例如,亚极模式水)以及随着人为主要Pb来源的变化而变化的该地区Pb同位素比。孟加拉湾的Pb-206 / Pb-207和Pb-208 / Pb-207高于阿拉伯海的Pb-206 / Pb-207和Pb-208 / Pb-207,这可能是由于不同来源的人为输入的Pb或海水将Pb同位素与天然颗粒交换而造成的。来自盆地边界的河流和/或沉积物。 (C)2015 Elsevier Ltd.保留所有权利。

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