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Resistance of a soapstone waste rock to freeze-thaw and wet-dry cycles: implications for use in a reclamation cover in the Canadian Arctic

机译:肥皂石废岩抗冻融和湿干循环的抵抗力:在加拿大北极填充覆盖中使用的影响

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Engineered covers are commonly used to control the potential environmental problems related to acid mine drainage and contaminated seepage from tailings and waste rock storage facilities. Cyclical environmental weathering processes, such as freeze-thaw and wet-dry cycles, can cause rock degradation. However, these processes are usually not explicitly considered when selecting coarse-grained geomaterials for use as cover materials, even though they could be responsible for a decrease in cover performance over time. This study assesses the durability of a non-potentially acid-generating soapstone waste rock unit with respect to freeze-thaw and wet-dry cycles. This waste rock is intended for use as a cover material for the reclamation of mine tailings and waste rock storage facilities at a site in the Canadian Arctic. An experimental approach was developed based on existing standard and non-standard laboratory methods. Degradation tests were conducted on rock cores, rock slabs, and 50-mm granular materials. These tests examined changes in selected physical and mechanical properties before and after 20 and 80 freeze-thaw and wet-dry cycles. The high density, low water absorption index, and low apparent porosity of the fresh waste rocks suggested excellent rock durability, which was confirmed by the degradation tests that showed acceptable mass losses and negligible evolution of the material's physical and mechanical properties over time. Considering the results of this study, the studied waste rock unit was identified as an excellent construction material for mine closure purposes. The experimental approach developed for this study could be included in cover design methodologies and applied widely in the selection of rocks for use in mine reclamation schemes in cold regions.
机译:工程封面通常用于控制与酸矿排水有关的潜在环境问题,以及尾矿和废弃物储存设施的污染渗流。周期性环境风化过程,如冻融和湿干循环,可能导致岩石降解。 However, these processes are usually not explicitly considered when selecting coarse-grained geomaterials for use as cover materials, even though they could be responsible for a decrease in cover performance over time.该研究评估了非潜在酸产生的皂石废岩单元相对于冻融和湿干循环的耐久性。该废岩旨在用作加拿大北极地区的矿山尾矿和废岩储存设施的覆盖材料。基于现有标准和非标准实验室方法开发了一种实验方法。在岩石,岩石板和<50mm颗粒材料上进行降解试验。这些试验在20和80次冻融和湿干循环之前和之后检查了所选物理和机械性能的变化。新鲜废弃物岩石的高密度,低吸水指数和低表观孔隙率表明优异的岩石耐久性,通过降解试验证实,显示出可接受的质量损失,随着时间的推移,材料的物理和机械性能的忽略演化可忽略不计。考虑到本研究的结果,所研究的废岩单元被识别为矿井闭合目的的优异结构材料。为本研究开发的实验方法可以包括在覆盖设计方法中,并广泛应用于寒冷地区的矿井回收方案中的岩石中的选择。

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