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Effects of a small-scale, abandoned gold mine on the geochemistry of fine stream-bed and floodplain sediments in the Horsefly River watershed, British Columbia, Canada

机译:加拿大不列颠哥伦比亚省马蝇河流域的小型废弃金矿对精细河床和洪泛区沉积物地球化学的影响

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摘要

Mining is known to be a major source of metal contamination for fluvial systems worldwide. Monitoring and understanding the effects on downstream water and sediment quality is essential for its management and to mitigate against detrimental environmental impacts. This study aimed to examine the effects of the small-scale, abandoned, hydraulic Black Creek gold mine on the geochemical content of fine (<63 mu m) stream bed and floodplain sediment in the Horsefly watershed (British Columbia, Canada), which is a part of the Quesnel River basin. Concentrations of As, Cd, Se and Zn were determined by aqua regia digestion and the modified BCR (European Community Bureau of Reference) sequential extraction procedure followed by inductively coupled plasma-optical emission spectroscopy or inductively coupled plasma-mass spectrometry. Age-depth models for the floodplain cores were constructed using excess Pb-210 and Cs-137 activity concentration profiles. The results show that the mine caused local As contamination of the Horsefly River floodplain sediment during the first years of operation, but at present the contamination is mainly contained in the Black Creek. Present-day and recent concentrations of Cd, Se and Zn in the Horsefly River are elevated and this is probably derived from other upstream mining activities. The spatial and temporal changes in heavy-metal concentrations suggest a slight, but not particularly widespread, mining effect on the fine-sediment geochemistry in the Horsefly River system.
机译:众所周知,采矿是全球河流系统金属污染的主要来源。监测和了解对下游水和沉积物质量的影响对于其管理和减轻不利的环境影响至关重要。这项研究的目的是检验小规模,废弃的水力黑溪金矿对马蝇流域(加拿大不列颠哥伦比亚省)细小(<63微米)河床和洪泛区沉积物的地球化学含量的影响。康奈尔河流域的一部分。通过王水消化和改进的BCR(欧洲参考局)顺序萃取程序,然后采用电感耦合等离子体发射光谱法或电感耦合等离子体质谱法测定As,Cd,Se和Zn的浓度。使用过量的Pb-210和Cs-137活性浓度分布图建立泛洪核心层的年龄深度模型。结果表明,该矿在运营的最初几年对马蝇河洪泛区沉积物造成了局部砷污染,但目前该污染主要包含在黑溪中。马蝇河中Cd,Se和Zn的当前和最近浓度都升高了,这可能源自其他上游采矿活动。重金属浓度的时空变化表明,对Horsfly River系统中细沉积物地球化学有轻微但不是特别广泛的开采作用。

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