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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Geochemical controls on arsenic distribution in the Baccu Locci stream catchment (Sardinia, Italy) affected by past mining
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Geochemical controls on arsenic distribution in the Baccu Locci stream catchment (Sardinia, Italy) affected by past mining

机译:受过去采矿影响的巴库洛奇河集水区(意大利撒丁岛)中砷分布的地球化学控制

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摘要

The Baccu Locci stream catchment (Sardinia, Italy) is affected by serious As contamination as a consequence of past mining. The presence of both point and widespread sources of contamination (waste-rock dumps and flotation tailings, respectively) strongly affects surface water chemistry, and produces high As concentrations (hundreds of mug l(-1)) in stream waters. Water chemistry of the Baccu Locci stream changes considerably over a distance of about 10 km as a consequence of various, locally concomitant, processes acting along the stream course: (1) mixing with metal-rich SO4 waters; (2) dissolution/precipitation of metal-bearing phases; (3) mixing with HCO3-dominated lake waters; (4) gypsum dissolution coupled with calcite precipitation; (5) mixing with dilute surface and/or ground waters. In contrast to metals (e.g. Pb, Cu, Zn and Cd), whose dissolved concentrations rapidly decrease downstream of the mined area through (co-)precipitation/adsorption mechanisms, As concentrations tend to gradually increase (up to 0.9 mg l(-1)) along the stream course as far as the alluvial plain, though significant variations are locally observed. This behaviour is mainly due to the higher mobility of As than metals under the near neutral-oxidative conditions occurring in the Baccu Locci stream waters. Results of a leaching test indicate that part of the As contained in the flotation tailings occurs as As(III), which is more mobile and less strongly sorbed than As(V). The As released to the waters by various mechanisms (i.e. release/desorption from the Fe(III)-hydroxides coatings of silicate grains, oxidation of residual arsenopyrite, decomposition of scorodite) tends to remain in solution and to be transported long distances. As a consequence of the widespread presence of highly As-contaminated flotation tailings all over the medium-lower Baccu Locci stream catchment, long-term As contamination is expected. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 31]
机译:Baccu Locci流域(意大利,撒丁岛)受到过去采矿造成的严重As污染的影响。点污染源和广泛污染源(分别为废石堆场和浮选尾矿)的存在都强烈影响地表水化学,并在溪流水中产生高浓度的砷(数百马克杯(-1))。由于沿河道的各种局部伴随过程,Baccu Locci溪流的水化学性质在大约10 km的范围内发生了很大变化:(1)与富含金属的SO4水混合; (2)含金属相的溶解/沉淀; (3)与HCO3为主的湖水混合; (4)石膏溶解加上方解石沉淀; (5)与稀薄的地面和/或地下水混合。与金属(例如,Pb,Cu,Zn和Cd)的溶解浓度通过(共)沉淀/吸附机制在矿区下游快速降低的浓度相反,随着浓度逐渐增加(最高0.9 mg l(-1) ))沿河道直至冲积平原,尽管在当地观察到明显的变化。这种现象主要是由于在Baccu Locci溪流水中发生的中性氧化条件下,As的迁移率高于金属。浸出试验的结果表明,浮选尾矿中所含的一部分As以As(III)的形式存在,与As(V)相比,它具有更高的移动性和更弱的吸附性。砷通过各种机制释放到水体中(即从硅酸盐颗粒的Fe(III)-氢氧化物涂层释放/解吸,残留毒砂的氧化,臭葱石的分解)倾向于保留在溶液中并长距离运输。由于在中下层巴库洛奇溪流域普遍存在高度被砷污染的浮选尾矿,因此预计长期砷污染。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:31]

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