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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >The fate of major constituents and chromium and other trace elements when acid waters from the derelict Libiola mine (Italy) are mixed with stream waters
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The fate of major constituents and chromium and other trace elements when acid waters from the derelict Libiola mine (Italy) are mixed with stream waters

机译:当废弃的利比奥拉矿山(意大利)的酸性水与溪流水混合时,主要成分的命运以及铬和其他微量元素的命运

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摘要

Geochemical modeling was used to investigate the fate of major constituents and Cr and other trace elements when acid waters from the derelict Libiola mine are mixed with the Gromolo creek waters, and related processes. This was carried out in two steps: (1) Mixing between acid waters and stream waters was simulated using the EQ3/6 software package; the results showed that mixing brings about the precipitation of some secondary solid phases, mainly a ferrihydrite-rich solid mixture of hydroxides and basaluminite. (2) The sorption of cations (Cr3+, Cu2+, Zn2+, Mn2+, Ni2+, Ca2+, and Mg2+) and anions (CrO42- and SO42-) on ferrihydrite was modeled by means of the code MINTEQA2, treating the concentrations of relevant Solutes and the moles of ferrihydrite (computed by means of EQ3/6) as input data.The results of this two-step geochemical modeling generally agree with analytical data, supporting the following conclusions: (a) dissolved Mg, Ca, Na, SO4, Cl, HCO3 and SiO2 are mainly controlled by acid water-stream water mixing; (b) Fe is mainly incorporated into ferrihydrite and subordinately in schwertmannite and jarosite; (c) Al is chiefly sequestered in basaluminite and alunite; (d) K is temporarily incorporated into jarosite and alunite and is released into the aqueous solution upon their dissolution; (e) the mobility of Cu, Zn, Ni, Mn, and Cr(VI) is mainly controlled by sorption on precipitating ferrihydrite; (f) Cr(III) is immobilised by both incorporation into ferrihydrite and sorption on its surface.The effects of acid mine waters on the Gromolo aqueous system are not ameliorated to an acceptable extent by natural attenuation through dilution and related processes. (c) 2005 Elsevier Ltd. All rights reserved.
机译:当废弃的利比奥拉矿山的酸性水与格罗莫洛河水混合时,使用地球化学模型研究了主要成分以及铬和其他微量元素的去向,以及相关过程。这分两个步骤进行:(1)使用EQ3 / 6软件包模拟酸性水和溪流水之间的混合;结果表明,混合会引起一些次生固相的沉淀,主要是富含铁水合物的氢氧化物和玄武岩的固体混合物。 (2)用代码MINTEQA2模拟了铁酸盐上阳离子(Cr3 +,Cu2 +,Zn2 +,Mn2 +,Ni2 +,Ca2 +和Mg2 +)和阴离子(CrO42-和SO42-)的吸附,处理了相关溶质和两步地球化学模拟的结果与分析数据基本吻合,支持以下结论:(a)溶解的Mg,Ca,Na,SO4,Cl ,HCO3和SiO2主要受酸性水流水混合的控制; (b)铁主要混入水铁矿中,次要含在schwertmannite和黄钾铁矾中; (c)Al主要被螯合在玄武岩和亚矾石中; (d)将钾暂时掺入黄铁矿和亚矾石中,并在其溶解后释放到水溶液中; (e)Cu,Zn,Ni,Mn和Cr(VI)的迁移率主要受沉淀在水铁矿上的吸附控制; (f)铬(III)通过掺入三水铁矿和吸附在其表面上而被固定化。酸性矿泉水对Gromolo水性体系的影响没有通过稀释和相关过程的自然衰减而改善到可接受的程度。 (c)2005 Elsevier Ltd.保留所有权利。

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