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首页> 外文期刊>Oceanographic Literature Review >Behavior of Trace Elements during Oxidation of Sphalerite of the Irinovskoe Hydrothennal Sulfide Field (13°20′N, Mid-Atlantic Ridge)
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Behavior of Trace Elements during Oxidation of Sphalerite of the Irinovskoe Hydrothennal Sulfide Field (13°20′N, Mid-Atlantic Ridge)

机译:氧化伊替洛替洛豆植物硫化物场(13°20'N,大西洋中脊)氧化物氧化物期间微量元素的行为

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摘要

The formation of present-day seafloor sulfide deposits is accompanied by their continuous oxidation and crystallization of insoluble Fe oxyhydroxides, which absorb metals (including heavy metals) (Fallon et al., 2017). Due to the high sorption ability of Fe oxyhydroxides, it is suggested that the removal of metals during submarine oxidation into ambient seawater is insignificant (Fallon et al., 2017). Quantitative data on the redistribution of trace elements between primary sulfides and their oxidation products, however, are insufficient. Recently, we revealed the enrichment of trace elements in covellite with respect to primary sphalerite, chalcopyrite, and isocubanite (Melekestseva et al., 2017). In this study, we estimate the behavior of trace elements during submarine oxidation of sphalerite from smokers at the Irinovskoe hydrothermal field (Atlantic Ocean), which is intensely replaced by Fe oxyhydroxides. As a result, it is established that Fe oxyhydroxides are enriched in many trace elements with respect to sphalerite and the mode of their occurrence is identified.
机译:当前海底硫化物沉积物的形成伴随着它们的连续氧化和结晶的不溶性Fe羟基氧化物,吸收金属(包括重金属)(Fallon等,2017)。由于Fe羟基氧化物的高吸附能力,建议在潜艇氧化过程中除去金属在环境海水中是微不足道的(Fallon等,2017)。然而,关于硫化物和其氧化产品之间的微量元素再分配的定量数据不足。最近,我们透露了关于初级硫醇,黄铜矿和异氰酸盐(Melekestseva等,2017)的初级硫晶岩中微量元素的富集。在这项研究中,我们估计了来自Irinovskoe水热场(大西洋)的吸烟者血管血管血管血管氧化过程中的微量元素的行为,这与Fe Oxydroxides强烈取代。结果,确定Fe羟基氧化物在许多关于闪锌矿中富集的富含氧化物,并且鉴定了它们的发生模式。

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    《Oceanographic Literature Review》 |2020年第9期|1959-1959|共1页
  • 作者单位

    South Urals Federal Research Center of Mineralogy and Geoecology Urals Branch Russian Academy of Sciences Institute of Mineralogy Chelyabinsk district Miass 456317 Russian Federation;

    South Urals Federal Research Center of Mineralogy and Geoecology Urals Branch Russian Academy of Sciences Institute of Mineralogy Chelyabinsk district Miass 456317 Russian Federation;

    South Urals Federal Research Center of Mineralogy and Geoecology Urals Branch Russian Academy of Sciences Institute of Mineralogy Chelyabinsk district Miass 456317 Russian Federation;

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