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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >An approach to quantify sources, seasonal change, and biogeochemical processes affecting metal loading in streams: Facilitating decisions for remediation of mine drainage
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An approach to quantify sources, seasonal change, and biogeochemical processes affecting metal loading in streams: Facilitating decisions for remediation of mine drainage

机译:一种量化影响溪流中金属负载的来源,季节性变化和生物地球化学过程的方法:促进矿山排水修复的决策

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Historical mining has left complex problems in catchments throughout the world. Land managers are faced with making cost-effective plans to remediate mine influences. Remediation plans are facilitated by spatial mass-loading profiles that indicate the locations of metal mass-loading, seasonal changes, and the extent of biogeochemical processes. Field-scale experiments during both low- and high-flow conditions and time-series data over diel cycles illustrate how this can be accomplished. A low-flow experiment provDEed spatially detailed loading profiles to indicate where loading occurred. For example, SO24- was principally derived from sources upstream from the study reach, but three principal locations also were important for SO42- loading within the reach. During high-flow conditions, Lagrangian sampling provDEed data to interpret seasonal changes and indicated locations where snowmelt runoff flushed metals to the stream. Comparison of metal concentrations between the low- and high-flow experiments indicated substantial increases in metal loading at high flow, but little change in metal concentrations, showing that toxicity at the most downstream sampling site was not substantially greater during snowmelt runoff. During high-flow conditions, a detailed temporal sampling at fixed sites indicated that Zn concentration more than doubled during the diel cycle. Monitoring programs must account for diel variation to provDEe meaningful results. Mass-loading studies during different flow conditions and detailed time-series over diel cycles provDEe useful scientific support for stream management decisions.
机译:历史采矿在世界各地的流域留下了复杂的问题。土地经理面临制定具有成本效益的计划来补救地雷的影响。空间质量负荷曲线可帮助制定修复计划,这些曲线可指示金属质量负荷的位置,季节变化以及生物地球化学过程的程度。在低流量和高流量条件下的现场规模实验以及diel循环上的时间序列数据说明了如何实现这一目标。一个低流量的实验提供了详细的载荷分布图,以指示发生载荷的位置。例如,SO24-主要来自研究范围上游的来源,但是三个主要位置对于范围内的SO42-负载也很重要。在高流量条件下,拉格朗日采样提供了数据,以解释季节性变化并指出融雪径流将金属冲入河流的位置。低流量和高流量实验之间金属浓度的比较表明,高流量时金属负载量显着增加,但金属浓度变化不大,表明在融雪径流过程中,最下游采样点的毒性没有明显提高。在高流量条件下,在固定位置进行的详细时间采样表明,在diel循环中Zn的浓度增加了一倍以上。监控程序必须考虑diel的变化,以提供有意义的结果。在不同的流量条件下以及在diel周期内详细的时间序列期间的质量载荷研究为流管理决策提供了有用的科学支持。

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