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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Geochemical evolution of solutions derived from experimental weathering of sulfide-bearing rocks
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Geochemical evolution of solutions derived from experimental weathering of sulfide-bearing rocks

机译:含硫化物岩石的实验风化作用产生的溶液的地球化学演化

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摘要

The chemical composition of natural waters is affected by the weathering of geologic materials at or near the surface of the Earth. Laboratory weathering experiments of whole-rock sulfide rocks from the Shoe-Basin Mine (SBM) and the Pennsylvania Mine (PM) from the Peru Creek Basin, Summit County, Colorado, indicate that the mineral composition of the sulfide rocks, changes in pH, the duration of the experiment, and the formation of sorbents such as Fe and Al oxyhydroxides affect the chemical composition of the resulting solution. Carbonate minerals in the rock from SBM provide buffering capacity to the solution, contribute to increases in the pH and enhance the formation of Fe and Al oxyhydroxides, which sorb cations from solution. The final solution pH obtained in the experiments was similar to those measured in the field (i.e., 2.8 for PM and 5.0 for SBM). At PM, acidic, metal-rich mine effluent is discharged into Peru Creek where it mixes with stream water. As a result, the pH of the effluent increases causing Fe and Al oxyhydroxide and schwertmannite to precipitate. The resulting solids sorb metal cations from the water thereby improving the quality of the water in Peru Creek. (c) 2006 Published by Elsevier Ltd.
机译:天然水的化学成分受地球表面或附近的地质材料的风化影响。来自科罗拉多州萨米特县佩鲁克里克盆地Shoe-Basin矿(SBM)和Pennsylvania矿(PM)的全岩石硫化物岩石的实验室风化实验表明,硫化物岩石的矿物组成,pH值的变化,实验的持续时间以及吸附剂(如Fe和Al羟基氧化物)的形成会影响所得溶液的化学组成。来自SBM的岩石中的碳酸盐矿物为溶液提供缓冲能力,有助于增加pH值,并增强Fe和Al羟基氧化物的形成,后者可吸收溶液中的阳离子。实验中获得的最终溶液pH值与现场测量的相似(即PM为2.8,SBM为5.0)。在PM,酸性,富含金属的矿山废水被排入Peru Creek,并与溪流水混合。结果,流出物的pH增加,导致Fe和Al的氢氧化氢氧化物和Schwertmannite沉淀。所得的固体从水中吸收金属阳离子,从而改善了秘鲁河的水质。 (c)2006年由Elsevier Ltd.发布。

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