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Acid Water Neutralization Using Microbial Fuel Cells: An Alternative for Acid Mine Drainage Treatment

机译:使用微生物燃料电池中和酸性水:酸性矿山排水处理的替代方法

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Acid mine drainage (AMD) is a complex environmental problem, which has adverse effects on surface and ground waters due to low pH, high toxic metals, and dissolved salts. New bioremediation approach based on microbial fuel cells (MFC) can be a novel and sustainable alternative for AMD treatment. We studied the potential of MFC for acidic synthetic water treatment through pH neutralization in batch-mode and continuous-flow operation. We observed a marked pH increase, from ~3.7 to ~7.9 under batch conditions and to ~5.8 under continuous-flow operation. Likewise, batch reactors (non-MFC) inoculated with different MFC-enriched biofilms showed a very similar pH increase, suggesting that the neutralization observed for batch operation was due to a synergistic influence of these communities. These preliminary results support the idea of using MFC technologies for AMD remediation, which could help to reduce costs associated with conventional technologies. Advances in this configuration could even be extrapolated to the recovery of heavy metals by precipitation or adsorption processes due to the acid neutralization.
机译:酸性矿山排水(AMD)是一个复杂的环境问题,由于pH值低,高毒金属和溶解的盐分,会对地表水和地下水产生不利影响。基于微生物燃料电池(MFC)的新生物修复方法可以成为AMD治疗的一种新颖且可持续的替代方法。我们通过分批模式和连续流操作中的pH中和研究了MFC在酸性合成水处理中的潜力。我们观察到pH值明显增加,在批处理条件下从〜3.7增加到〜7.9,在连续流操作下达到〜5.8。同样,用不同的富含MFC的生物膜接种的分批反应器(非MFC)显示出非常相似的pH值增加,表明分批操作观察到的中和是由于这些群落的协同作用所致。这些初步结果支持使用MFC技术进行AMD修复的想法,这可能有助于降低与常规技术相关的成本。由于酸中和,这种结构的进步甚至可以推断为通过沉淀或吸附过程回收重金属。

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