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首页> 外文期刊>Journal of Contaminant Hydrology >Effect of channelling on water balance, oxygen diffusion and oxidation rate in mine waste rock with an inclined multilayer soil cover
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Effect of channelling on water balance, oxygen diffusion and oxidation rate in mine waste rock with an inclined multilayer soil cover

机译:窜流对倾斜多层土壤覆盖层矿山water水平衡,氧扩散和氧化速率的影响

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摘要

Engineered soil covers provide an option to mitigate acid rock drainage through reduced water flow and gaseous oxygen influx to underlying mine waste. Channels such as fissures, cracks or fractures developed in the barrier may influence the long-term performance of the soil cover. However, limited published information is available on the extent to which soil cover performance is impacted by these fissures and cracks. This study was conducted to investigate the effect of channelling in a barrier layer on water flow and oxygen transport in a soil cover. Two inclined (a slope of 20%) multilayer soil covers were examined under laboratory conditions. One cover had a 10-cm wide sand-filled channel in a compacted barrier layer (silty clay) at the upslope section, while the other cover was a normal one without the channel pathway. The soil covers were installed in plastic boxes measuring 120 cm × 120 cm × 25 cm (width × height× thickness). The sand-filled channel was designed to represent the aggregate of fissures and cracks that may be present in the compacted barrier. The soil covers were subjected to controlled drying and wetting periods selected to simulate field situation at the Whistle mine site near Capreol, Ontario, Canada. The measured results indicated that interflow decreased from 72.8% of the total precipitation in the soil cover without channel flow to 35.3% in the cover with channel flow, and percolation increased from zero in the normal soil cover to 43.0% of the total precipitation in the cover with channel flow. Gaseous oxygen transfer into the waste rock below the cover soils was 1091 times greater in the cover with channel than in the soil cover without channel. The channel pathway present in the barrier layer acted as a major passage for water movement and gaseous oxygen diffusion into the waste rock layer, thus decreasing the performance of the soil cover. The spacing of the channel with respect to the length of the test box is similar to those found in other published fracture networks. The distribution and partitioning of the water balance components would be expected to be similar to other situations with the same cover slope. This, of course, would depend on rainfall intensity.
机译:工程土壤覆盖层提供了一种选择,可通过减少水流量和气态氧气流入潜在矿山废物的方式来减轻酸性岩石的排泄。屏障中出现的裂缝,裂缝或裂缝等通道可能会影响土壤覆盖的长期性能。但是,关于这些裂缝和裂缝对土壤覆盖性能影响程度的公开信息很少。进行这项研究是为了研究在屏障层中窜动对土壤覆盖物中水流和氧气传输的影响。在实验室条件下检查了两个倾斜的(坡度为20%)多层土壤覆盖物。一个覆盖物在上坡部分的压实阻挡层(粉质粘土)中有一个10厘米宽的沙子填充通道,而另一个覆盖物是没有通道路径的普通覆盖物。将土壤覆盖物安装在尺寸为120厘米×120厘米×25厘米(宽×高×厚)的塑料盒中。充满沙子的通道旨在代表压实屏障中可能存在的裂缝和裂缝的集合。在加拿大安大略省卡普雷奥尔附近的惠斯勒矿场,对土壤覆盖层进行了受控的干燥和湿润时间模拟。实测结果表明,渗流从无通道土壤覆盖层的总降水量的72.8%下降到有通道流量的土壤覆盖层的35.3%,渗透率从正常土壤覆盖层的零增加到占总降水量的43.0%。用通道流盖住。气态氧在有通道的覆盖层中比在无通道的土壤覆盖层中转移到覆盖土壤以下的废石中的数量大了1091倍。阻挡层中存在的通道路径是水运动和气态氧扩散到waste石层中的主要通道,从而降低了土壤覆盖的性能。相对于测试箱长度的通道间距与其他已发布的裂缝网络中的间距相似。水分平衡成分的分布和分配将与覆盖坡度相同的其他情况相似。当然,这将取决于降雨强度。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2010年第4期|P.43-63|共21页
  • 作者

    Qing Song; Ernest K. Yanfull;

  • 作者单位

    Geotechnkal Research Centre, Department of Civil and Environmental Engineering, The University of Western Ontario, London, Ontario, Canada N6A 569;

    rnGeotechnkal Research Centre, Department of Civil and Environmental Engineering, The University of Western Ontario, London, Ontario, Canada N6A 569;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    channel flow; mine waste rock; oxidation rate; oxygen diffusion; soil cover; water balance;

    机译:渠道流量开采waste石;氧化率氧扩散土壤覆盖水平衡;

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