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Development of Passive Treatment Systems for Treating Acid Mine Drainage at Stockton Mine

机译:斯托克顿矿处理酸性矿山排水的被动处理系统的开发

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摘要

Acid mine drainage (AMD) at Stockton Coal Mine is generated from the oxidation of pyrite in carbonaceous mudstones exposed during surface mining. Acidity production causes metals such as Fe and Al to leach from overburden materials including feldspars. Water chemistry and flow were monitored at numerous AMD seeps at Stockton. Manchester Seep, which daylights at the toe of an overburden embankment, was identified as a suitable research site for trialling passive-treatment systems designed to neutralize acidity and sequester metals in AMD. Median dissolved metal concentrations from the Manchester seep were; 62.9 mg/L Fe, 32.5 mg/L Al, 0.0514 mg/L Cu, 0.175 mg/L Ni, 0.993 mg/L Zn and 0.00109 mg/L Cd.Treatment of this water is achieved downstream by the Mangatini fine limestone dosing plant, however in the interest of assessing other technologies this work investigated the use of bioreactors to assess the potential of passive treatment technologies to treat the Manchester Seep AMD. Geotechnical parameters, including hydraulic conductivity, were measured for various mixtures of organic and alkaline waste products suitable for use as bioreactor media. Seven mesocosm-scale bioreactors were fed aerated Manchester Seep AMD in a laboratory set-up for nearly four months. Bioreactors incorporating mussel shells performed better than limestone and were capable of sequestering >0.80 mol metals/m3 substrate/day (or neutralising acidity at rates >66 g CaCO3/m2/day) while removing >98.2% of all metals. Tracer studies were conducted on two bioreactor systems containing the same substrate composition but different reactor shapes. Results will be applied to reactor models to better ascertain the relationship between reactor hydraulics and treatment performance.Pilot-scale passive systems incorporating three treatment stages were designed and are currently being installed to treat a portion of Manchester Seep AMD on site. The first stage consists of a sedimentation basin to remove sediment. The second stage includes three bioreactors in parallel to test treatment effectiveness of different substrate mixtures, depths and hydraulic configurations. Data derived from the mesocosm lab study were used to optimise these designs. The final treatment stage consists of three different aerobic wetland configurations, also operated in parallel, to compare their effectiveness at providing oxygenation and tertiary treatment of metals (primarily Fe) from bioreactor effluent.
机译:斯托克顿煤矿的酸性矿山排水(AMD)是由露天开采过程中暴露的碳质泥岩中黄铁矿的氧化产生的。酸度的产生导致诸如铁和铝的金属从包括长石在内的表土中浸出。在斯托克顿的许多AMD渗漏处监测了水的化学和流量。曼彻斯特·塞普(Manchester Seep)白天在覆盖土路堤的脚趾上采光,被确定为试验被动处理系统的合适研究地点,该系统旨在中和AMD中的酸度和螯合金属。来自曼彻斯特渗流的溶解金属浓度的中位数为; 62.9 mg / L铁,32.5 mg / L铝,0.0514 mg / L铜,0.175 mg / L镍,0.993 mg / L锌和0.00109 mg / L镉.Mangatini细石灰石加料装置在下游实现了水的处理但是,为了评估其他技术,这项工作调查了生物反应器的使用,以评估被动处理技术治疗曼彻斯特Seep AMD的潜力。测量了适用于生物反应器介质的各种有机和碱性废品混合物的岩土参数,包括水力传导率。七个中观规模的生物反应器在实验室设置中充气了曼彻斯特·西普(Manchester Seep AMD)。装有贻贝壳的生物反应器的性能优于石灰石,能够隔离> 0.80 mol金属/ m3底物/天(或以> 66 g CaCO3 / m2 /天的速率中和酸度),同时去除所有金属的> 98.2%。示踪剂研究是在两个生物反应器系统上进行的,这些系统包含相同的底物组成但反应器形状不同。结果将应用于反应堆模型,以更好地确定反应堆水力与处理性能之间的关系。设计了具有三个处理阶段的中试被动系统,目前正在安装中,用于现场处理一部分曼彻斯特Seep AMD。第一阶段包括一个沉淀池,用于去除沉积物。第二阶段包括并联的三个生物反应器,以测试不同基质混合物,深度和水力配置的处理效果。来自中观实验室研究的数据用于优化这些设计。最后的处理阶段包括三个不同的需氧湿地配置,这些配置也可以并行运行,以比较它们在提供氧气和对生物反应器废水中的金属(主要是Fe)进行三级处理方面的有效性。

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