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Source Treatment of Acid Mine Drainage at a Backfilled Coal Mine Using Remote Sensing and Biogeochemistry

机译:遥感和生物地球化学对回填煤矿酸性排水源处理的研究

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A biological source treatment (BST) technique using remote sensing and biogeochemistry has been developed to address acid mine drainage (AMD) at its source. The BST technique utilizes down-hole injections of microbial inoculum and substrate amendments to establish a biofilm on the surface of metal sulfides (AMD source material). The treatment results in an elevated groundwater pH (from acidic to circum-neutral levels) and prevents further oxidation of AMD source material. The first 2 years of an ongoing field study of the BST technique at a reclaimed coal mine in central Tennessee (USA) has produced successful results. For instance, the water chemistry in a monitoring well down-gradient from injection wells has improved substantially as follows: the pH increased 1.3 units from 5.7 to 7.3, the dissolved (0.45 µm-filtered) iron concentration decreased by 84% from 93 to 15 mg/l, the conductivity decreased by 379 µS/cm, and sulfate decreased by 78 mg/l. Electromagnetic induction surveys were conducted to identify AMD source material and monitor BST performance by measuring changes in subsurface resistivity throughout the site. These surveys revealed a treatment zone created between injection wells where the resistance of contaminated groundwater from up-gradient AMD sources increased as it flowed past injection wells, thus, suggesting this technique could be used to treat AMD sources directly or to intercept and neutralize sub-surface AMD.
机译:已经开发出使用遥感和生物地球化学的生物源处理(BST)技术来解决其源头的酸性矿山排水(AMD)问题。 BST技术利用微生物接种物的井下注射和底物修饰剂在金属硫化物(AMD原料)的表面上建立生物膜。该处理导致地下水pH值升高(从酸性到中性水平),并防止AMD原料进一步氧化。在美国田纳西州中部一家再生煤矿中进行的BST技术的现场研究的前两年,已经取得了成功的结果。例如,从注水井到降井的监测井中的水化学性质已得到显着改善:pH值从5.7提高到1.3到7.3增加了1.3个单位,溶解的(0.45 µm过滤的)铁浓度从93降低到15。 mg / l,电导率降低379 µS / cm,硫酸盐降低78 mg / l。进行电磁感应调查以识别AMD原材料并通过测量整个站点的地下电阻率变化来监视BST性能。这些调查显示,在注入井之间建立了一个处理区域,随着流经注入井,来自上游坡度AMD来源的被污染的地下水的阻力会增加,因此,该技术可用于直接处理AMD来源或拦截和中和亚地下水。表面AMD。

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