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首页> 外文期刊>International Journal of Coal Science & Technology >Predicting release and aquatic effects of total dissolved solids from Appalachian USA coal mines
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Predicting release and aquatic effects of total dissolved solids from Appalachian USA coal mines

机译:预测美国阿巴拉契亚煤矿总溶解固体的释放和水生影响

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Abstract Appalachian USA coal mines have been implicated as major stressors to aquatic life in headwater streams via discharge of total dissolved solids (TDS). This paper summarizes column leaching studies of spoils ( n ??50) and refuse and TDS effects on local water quality and biotic response. The initial pH of most materials is near-neutral. Initial specific conductance (SC) values range from 500–1,000 to 3,000?μs/cm, but 2/3 of materials drop below 500?μs/cm after several pore volumes of leaching. Studies of mining-influenced streams have found altered aquatic life, relative to natural conditions with no mining influence, at SC ranging from ~200 to ~700?μs/cm with depressed aquatic life consistently associated with elevated TDS; mechanisms causing such effects are under investigation. We suggest that active mine operations should be modified to place high TDS producing materials in ways that reduce contact with percolating drainage waters.
机译:摘要美国阿巴拉契亚煤矿通过释放总溶解固体(TDS)成为上游源头水生生物的主要压力源。本文总结了弃渣(n≥50),垃圾和TDS对当地水质和生物响应的影响的柱浸研究。大多数材料的初始pH值接近中性。初始比电导(SC)值的范围从500–1,000到> 3,000?μs/ cm,但是经过数个孔体积的浸出后,2/3的材料降至500?μs/ cm以下。对受采矿影响的河流的研究发现,相对于自然条件,无采矿影响的水生生物发生了变化,SC范围为〜200至〜700?s / cm,而水生生物的衰弱与TDS的升高始终相关。造成这种影响的机制正在研究中。我们建议应修改活跃的矿山作业,以减少与渗透性排水接触的方式放置高TDS生产材料。

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