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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Lab to field scale effects on contaminated neutral drainage prediction from the Tio mine waste rocks
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Lab to field scale effects on contaminated neutral drainage prediction from the Tio mine waste rocks

机译:实验室到野外尺度的影响对Tio矿山废石污染的中性排水预测的影响

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The quality of mine drainage water is often predicted with laboratory prediction tests. However, laboratory and field results sometimes show significant differences in release rates or contaminant concentrations in drainage waters. Understanding the scale influence on the different factors that affect the geochemical behavior of mine wastes is necessary in order to extrapolate results from the laboratory to the field scale. The main objectives of the present study are to compare CND prediction results obtained at the laboratory (with columns, humidity cells, and weathering cells) and field scales (field test pads, waste rock pile), and to identify the main scale factors involved. This work focuses on CND-generating waste rocks from the Tio mine (Rio Tinto), in Quebec, Canada, where Ni concentrations in the drainage waters of some of the waste rock piles sometimes exceed the regulated limits. Results obtained in the present study suggest that the liquid to solid ratio differences between the scales have a significant impact on the geochemical responses of the waste rocks. The results also demonstrate that the humidity cell and weathering cell tests exaggerate the dissolution of neutralizing minerals versus the sulfide oxidation rate for the waste rocks studied. This phenomenon most probably occurs because of the high liquid to solid ratios of these laboratory tests with regard to field conditions. On the other hand, the column test seems to accelerate the release rates versus the field, while the ratios of neutralization to oxidation rates relatively remain close to that in the field.
机译:矿井排水水的质量通常通过实验室预测测试来预测。但是,实验室和现场结果有时显示排水中的释放速率或污染物浓度存在显着差异。为了将结果从实验室扩展到现场规模,有必要了解规模对影响矿山废物地球化学行为的不同因素的影响。本研究的主要目的是比较在实验室(使用色谱柱,湿度计和风化池)和现场规模(现场测试垫、,石堆)获得的CND预测结果,并确定涉及的主要规模因素。这项工作的重点是加拿大魁北克Tio矿(里约热内卢)产生的CND废石,其中一些废石堆的排水水中的镍浓度有时超过了规定的限值。在本研究中获得的结果表明,尺度之间的液固比差异对废石的地球化学响应具有重大影响。结果还表明,对于所研究的rocks石,湿度电池和风化电池测试夸大了中和性矿物的溶解与硫化物的氧化速率之间的关系。这种现象很可能是由于这些实验室测试相对于现场条件的高液固比而发生的。另一方面,柱试验似乎加快了相对于田间的释放速率,而中和与氧化速率的比率相对保持与田间接近。

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