首页> 外文会议>2014 SME annual meeting amp; exhibit (SME 2014): Leadership in uncertain times >ACCELERATED LEACHING OF MINE SPOILS AS MEANS OF REDUCING SPECIFIC CONDUCTIVITY
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ACCELERATED LEACHING OF MINE SPOILS AS MEANS OF REDUCING SPECIFIC CONDUCTIVITY

机译:加快矿井的浸出作为降低特定电导率的手段

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Elevated total dissolved solids (TDS) content in waters downstream from surface coal mines in Central Appalachia is an increasing concern, as unnaturally high TDS and/or associated specific conductivity (SC) may contribute to deteriorated stream ecosystem health. The aim of this preliminary study was to explore the efficacy of accelerated leaching as a means of minimizing long-term TDS/SC generation by problematic overburden materials. Five spoil samples were collected and leached using simulated rainwater solutions under ambient and acidified pH conditions. SC and pH were monitored during each leach cycle, and ICP-MS was used to determine how leaching conditions affected release of specific ions. This paper highlights the results of both jar and column leaching tests. Among the most significant findings was that, for certain spoil materials, SC in leach column effluent was effectively reduced when spoil was leached first with acidic rainwater followed by ambient rainwater (vs. ambient rainwater leaching alone). This suggests that accelerated leaching might aid in long-term stabilization of some materials.
机译:中阿巴拉契亚中部露天煤矿下游水域中总溶解固体(TDS)含量的升高正引起越来越多的关注,因为异常高的TDS和/或相关的比电导率(SC)可能导致河流生态系统的健康状况恶化。这项初步研究的目的是探索加速浸出的功效,这种方式可以最大程度地减少有问题的上覆材料长期产生TDS / SC。收集了五块土壤样品,并在环境和酸化pH条件下使用模拟雨水溶液进行浸出。在每个浸出循环中监测SC​​和pH,并使用ICP-MS确定浸出条件如何影响特定离子的释放。本文重点介绍了罐式和柱式浸出测试的结果。最重要的发现之一是,对于某些弃渣材料,先用酸性雨水淋洗然后再用环境雨水淋洗(相对于单独的环境雨水淋洗),可以有效地减少浸出塔流出物中的SC。这表明加速浸出可能有助于某些材料的长期稳定。

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