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The bioelectric well: a novel approach for in?situ treatment of hydrocarbon‐contaminated groundwater

机译:生物电井:一种现场处理碳氢化合物污染的地下水的新方法

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Summary Groundwater contamination by petroleum hydrocarbons (PHs) is a widespread problem which poses serious environmental and health concerns. Recently, microbial electrochemical technologies (MET) have attracted considerable attention for remediation applications, having the potential to overcome some of the limiting factors of conventional in?situ bioremediation systems. So far, field‐scale application of MET has been largely hindered by the limited availability of scalable system configurations. Here, we describe the ‘bioelectric well’ a bioelectrochemical reactor configuration, which can be installed directly within groundwater wells and can be applied for in?situ treatment of organic contaminants, such as PHs. A laboratory‐scale prototype of the bioelectric well has been set up and operated in continuous‐flow regime with phenol as the model contaminant. The best performance was obtained when the system was inoculated with refinery sludge and the anode potentiostatically controlled at +0.2?V versus SHE. Under this condition, the influent phenol (25?mg?l ?1 ) was nearly completely (99.5?±?0.4%) removed, with an average degradation rate of 59?±?3?mg?l ?1 d and a coulombic efficiency of 104?±?4%. Microbial community analysis revealed a remarkable enrichment of Geobacter species on the surface of the graphite anode, clearly pointing to a direct involvement of this electro‐active bacterium in the current‐generating and phenol‐oxidizing process.
机译:小结石油烃(PHs)对地下水的污染是一个普遍存在的问题,引起了严重的环境和健康问题。近年来,微生物电化学技术(MET)在修复应用中引起了极大的关注,具有克服常规原位生物修复系统某些局限性的潜力。到目前为止,可伸缩系统配置的有限可用性极大地阻碍了MET的现场规模应用。在这里,我们介绍了“生物电井”生物电化学反应器的配置,该配置可直接安装在地下水井中,并可用于有机污染物(如PH)的现场处理。已经建立了实验室规模的生物电井样机,并在连续流状态下以苯酚为模型污染物进行操作。当系统用精炼厂污泥接种并且阳极恒电位控制在相对于SHE的+0.2?V时,可获得最佳性能。在此条件下,流入的苯酚(25?mg?l?1)几乎被完全去除(99.5?±?0.4%),平均降解率为59?±?3?mg?l?1 d。效率为104±±4%。微生物群落分析表明,石墨阳极表面显着富集了土壤细菌,这显然表明该电活性细菌直接参与了电流产生和酚氧化过程。

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