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Benchmark problems for reactive transport modeling of the generation and attenuation of acid rock drainage

机译:酸性岩层排水产生和衰减的反应输运模型基准问题

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摘要

Acid rock drainage (ARD) is a problem of international relevance with substantial environmental and economic implications. Reactive transport modeling has proven a powerful tool for the process-based assessment of metal release and attenuation at ARD sites. Although a variety of models has been used to investigate ARD, a systematic model intercomparison has not been conducted to date. This contribution presents such a model intercomparison involving three synthetic benchmark problems designed to evaluate model results for the most relevant processes at ARD sites. The first benchmark (ARD-B1) focuses on the oxidation of sulfide minerals in an unsaturated tailing impoundment, affected by the ingress of atmospheric oxygen. ARD-B2 extends the first problem to include pH buffering by primary mineral dissolution and secondary mineral precipitation. The third problem (ARD-B3) in addition considers the kinetic and pH-dependent dissolution of silicate minerals under low pH conditions. The set of benchmarks was solved by four reactive transport codes, namely CrunchFlow, Flotran, HP1, and MIN3P. The results comparison focused on spatial profiles of dissolved concentrations, pH and pE, pore gas composition, and mineral assemblages. In addition, results of transient profiles for selected elements and cumulative mass loadings were considered in the intercomparison. Despite substantial differences in model formulations, very good agreement was obtained between the various codes. Residual deviations between the results are analyzed and discussed in terms of their implications for capturing system evolution and long-term mass loading predictions.
机译:酸性岩层排水(ARD)是一个具有国际意义的问题,具有重大的环境和经济意义。反应运输模型已被证明是用于基于过程评估ARD现场金属释放和衰减的强大工具。尽管已使用多种模型研究ARD,但迄今为止尚未进行系统的模型比较。这种贡献提出了一个模型比较,涉及三个综合基准问题,旨在评估ARD站点最相关过程的模型结果。第一个基准(ARD-B1)重点研究了不饱和尾矿库中硫化物矿物的氧化,其受大气氧的影响。 ARD-B2将第一个问题扩展到包括主要矿物质溶解和次要矿物质沉淀的pH缓冲。另外,第三个问题(ARD-B3)考虑了在低pH条件下硅酸盐矿物的动力学和pH依赖性溶解。基准测试集通过四个反应式传输代码(即CrunchFlow,Flotran,HP1和MIN3P)解决。结果比较着重于溶解浓度,pH和pE,孔隙气体组成和矿物组合的空间分布。此外,在比较中考虑了选定元素的瞬态曲线和累积质量载荷的结果。尽管模型制定存在很大差异,但各种规范之间还是取得了很好的一致性。根据结果​​对捕获系统演化和长期质量负荷预测的影响,对结果之间的残留偏差进行了分析和讨论。

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