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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Natural acid rock drainage associated with black shale in the Yukon Territory, Canada
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Natural acid rock drainage associated with black shale in the Yukon Territory, Canada

机译:加拿大育空地区与黑色页岩有关的天然酸性岩石排水

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摘要

Investigated herein are water and sediment geochemistry, and metal attenuation processes associated with natural acid rock drainage originating from black shale formations in the Macmillan Pass area, Clear Lake prospect and Engineer Creek by the Dempster Highway in the Yukon Territory, Canada. The most metalliferous water having pH 3.0, 150 mg/L Zn, 39 mg/L Ni, 2.8 mg/L Cu and 9.1 mg/L As was found in a tributary stream of Engineer Creek with no known mineral deposits occurring in the vicinity. For all three study areas, the water and sediment geochemistry is significantly affected by the local lithology and prevailing metal attenuation processes. Despite their anomalous acidity and metal contents, the natural acid streams contribute only a small fraction of the contaminant loadings to the major water courses because of their low flows. Dilution, neutralization, sorption and co-precipitation are identified as the major mechanisms attenuating aqueous transport of potentially deleterious metals. However, microbial mediation in metal attenuation is also evident in low-flow systems. The wide variation of water and sediment geochemistry along a flow path renders the establishment of background metal values difficult. In assessing environmental impacts, it may be more practical to consider metal loadings on a watershed scale than to rely on a comparison with operationally defined background concentrations. Crown Copyright (c) 2008 Published by Elsevier Ltd. All rights reserved.
机译:本文研究的是水和沉积物地球化学,以及与天然酸性岩石排泄有关的金属衰减过程,这些酸性排泄过程源自加拿大育空地区Dempster高速公路Macmillan Pass地区,Clear Lake前景和Engineer Creek的黑色页岩地层。在Engineer Creek的支流中发现了最具金属含量的水,其pH为3.0,Zn为150 mg / L,Ni为39 mg / L,Cu为2.8 mg / L和As为9.1 mg / L,附近没有发现任何矿藏。对于所有三个研究区域,水和沉积物的地球化学都受到当地岩性和主要金属衰减过程的显着影响。尽管它们的酸度和金属含量异常,但由于其流量低,天然酸流仅对主要水道贡献了一小部分污染物。稀释,中和,吸附和共沉淀被确定为减弱潜在有害金属水运的主要机理。然而,金属衰减中的微生物介导在低流量系统中也很明显。沿流动路径的水和沉积物地球化学变化很大,因此很难建立背景金属值。在评估环境影响时,考虑分水岭规模的金属负载比依赖于与操作定义的背景浓度进行比较可能更实际。 Crown版权所有(c)2008,由Elsevier Ltd.发行。保留所有权利。

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