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首页> 外文期刊>The American mineralogist >Mineralogical controls on antimony and arsenic mobility during tetrahedrite-tennantite weathering at historic mine sites Spania Dolina-Piesky and Eubietova-Svatodugna, Slovakia
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Mineralogical controls on antimony and arsenic mobility during tetrahedrite-tennantite weathering at historic mine sites Spania Dolina-Piesky and Eubietova-Svatodugna, Slovakia

机译:在历史悠久的矿山景观中的四合一 - 鸟塔岩石中的锑和砷移动性的矿物学控制斯普利纳·佩兹基斯普利纳 - 彭(斯洛伐克)

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摘要

The legacy of copper (Cu) mining at Spania Dolina-Piesky and Lubietova-Svatodusna (central Slovakia) is waste rock and soil, surface waters, and groundwaters contaminated with antimony (Sb), arsenic (As), Cu, and other metals. Copper ore is hosted in chalcopyrite (CuFeS2) and sulfosalt solid solution tetrahedrite-tennantite {Cu-6[Cu-4(Fe,Zn)(2)]Sb4S13-Cu-6[Cu-4(Fe,Zn)(2)]As4S13} that show wide-spread oxidation characteristic by olive-green color secondary minerals. Tetrahedrite-tennantite can be a significant source of As and Sb contamination. Synchrotron-based mu-XRD, mu-XRF, and mu-XANES combined with electron microprobe analyses have been used to determine the mineralogy, chemical composition, element distribution, and Sb speciation in tetrahedrite-tennantite oxidation products in waste rock. Our results show that the mobility of Sb is limited by the formation of oxidation products such as tripuhyite and romeite group mineral containing 36.54 wt% Sb for samples where the primary mineral chemical composition is close to tetrahedrite end-member. Antimony K-edge mu-XANES spectra of these oxidation products indicate that the predominant Sb oxidation state is 5(+). Arsenic and Cu are also hosted by amorphous phases containing 6.23 wt% Sb on average and these are intergrown with tripuhyite and romeite. Antimony in this environment is not very mobile, meaning it is not easily released from solid phases to water, especially compared to As, Cu, and S. For samples where the primary sulfosalt is close to tennantite composition, the oxidation products associated with tennantite relicts contain 2.43 wt% Sb and are amorphous. The variable solubility of the secondary minerals that have been identified is expected to influence mobility of Sb and As in near-surface environment.
机译:铜(Cu)开采在Spinia Dolina-Piesky和Lubietova-Svatodusna(中央斯洛伐克)的遗产是废岩和土壤,表面水域和地下水,与锑(Sb),砷(As),Cu和其他金属污染。铜矿载于黄铜矿(CuFE 2)和硫磺酸固溶体四元丙二酸盐 - 腺嘌呤{Cu-6 [Cu-4(2)] Sb4S13-Cu-6 [Cu-4(Fe,Zn)(2) [AS4S13},通过橄榄绿型二次矿物显示宽展氧化特性。 Tetrahedrite-undnantite可以是AS和SB污染的重要来源。基于同步的MU-XRD,MU-XRF和MU-XANES与电子微探针分析结合使用,用于确定废岩中的四氢盐 - 腺系氧化产物中的矿物学,化学成分,元素分布和SB格式。我们的研究结果表明,Sb的迁移率受氧化产品的限制,如含有36.54wt%Sb的氧化产品,例如含有初级矿物化学组合物接近四德彼德末端构件的样品。这些氧化产物的锑k边缘Mu-X x谱表示主要的Sb氧化状态为5(+)。砷和Cu也被含有6.23wt%Sb的非晶态相平均托管,并且这些与三氢氨酸和罗马岩均匀。在这种环境中的锑不是非常移动,这意味着它不易从固体相释放到水中,特别是与伯爵和S.初级硫磺酸的样品相比,与腺系组合物接近的样品,氧化产品依赖于腺嘌呤组合物相关的氧化产物含有2.43wt%的Sb,是无定形的。已经鉴定的次级矿物的可变溶解度预计会影响Sb的迁移率和近表面环境。

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