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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Element discharge from pyritic mine tailings at limited oxygen availability in column experiments
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Element discharge from pyritic mine tailings at limited oxygen availability in column experiments

机译:柱实验中有限氧供量下黄铁矿尾矿中的元素释放

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摘要

Sulfide mineral oxidation in mine tailings deposits poses a long term threat to surrounding ground water and surface waters. Soil or water cover remediation aims at reducing the rate of sulfide mineral oxidation by decreasing the 02 ingress rate. In this study, the authors addressed the rate of sulfide oxidation and pH buffering in -33 months long, well-controlled laboratory studies of water saturated columns of sulfidic mine tailings from the Kristineberg site in Sweden at reduced O-2 availability. The element discharge rates slowly declined towards a quasi-steady state over hundreds of days. Non-reactive tracer tests showed an anomalously large dispersion, indicating strong flow heterogeneity, possibly including preferential flow and/or stagnant water zones. Congruent dissolution of pyrite and sphalerite by injected oxidants (dissolved O-2 and Fe(III)) adequately explained the discharge rate of Fe, S and Zn at quasi-steady state. Arsenic, Pb and Cu were partly retained in the tailings. Base cation discharge rates, and thus pH buffering, were apparently controlled by the rate of acidity production, with actual pH levels, available mineral surface area, and water residence times being of less importance. (c) 2005 Elsevier Ltd. All rights reserved.
机译:矿山尾矿中的硫化物矿物氧化对周围的地下水和地表水构成了长期威胁。土壤或水覆盖物的修复旨在通过降低O 2的进入速率来降低硫化物矿物的氧化速率。在这项研究中,作者研究了-33个月的硫化物氧化和pH缓冲速率,对来自瑞典Kristineberg场的硫化矿尾矿的水饱和柱进行了良好控制的实验室研究,降低了O-2的利用率。数百天后,元素放电速率逐渐下降至准稳态。非反应示踪剂测试显示异常大的分散,表明强烈的流动非均质性,可能包括优先流动和/或停滞的水区。注入的氧化剂(溶解的O-2和Fe(III))将黄铁矿和闪锌矿同时溶解,足以说明准稳态下Fe,S和Zn的放电速率。尾矿中部分保留了砷,铅和铜。碱性阳离子的排放速率以及因此对pH的缓冲作用显然是由酸度的产生速率控制的,而实际的pH值,有效矿物质表面积和水停留时间的重要性较小。 (c)2005 Elsevier Ltd.保留所有权利。

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