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Preparation of integrative cubes as a novel biological permeable reactive barrier medium for the enhancement of in situ aerobic bioremediation of nitrobenzene-contaminated groundwater

机译:整体立方体的制备作为新型生物可渗透反应性屏障介质,用于增强对硝基苯污染的地下水的原位好氧生物修复。

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摘要

Recent studies have indicated that in situ aerobic bioremediation is one of the most effective methods for remediating groundwater contaminated with nitrobenzene (NB). Aerobic bioremediation is largely dependent on the maintenance of adequate dissolved oxygen (DO) levels in the groundwater. Traditional in situ aeration has various disadvantages, such as high operational costs and nonuniform aeration. In this study, integrative cubes were prepared and utilized as a novel biological permeable reactive barrier (bio-PRB) medium to enhance the aerobic bioremediation of NB-contaminated groundwater. The results revealed an NB removal rate greater than 98.68% after 15-20days of continuous oxygen release from the bio-PRB medium. DO concentrations reached 8.0mg/L during treatment, and NB-degrading bacteria were able to tolerate a range of pH conditions. This multifaceted bio-PRB medium can simultaneously adsorb and biodegrade NB, release oxygen, and neutralize the pH with phosphate buffer. The results of this study suggest that this bio-PRB medium represents a highly effective in situ bioremediation method for NB-contaminated groundwater.
机译:最近的研究表明,原位好氧生物修复是修复被硝基苯(NB)污染的地下水的最有效方法之一。有氧生物修复很大程度上取决于维持地下水中足够的溶解氧(DO)水平。传统的原位通气具有各种缺点,例如高运行成本和不均匀的通气。在这项研究中,整体立方体被制备并用作新型生物可渗透反应屏障(bio-PRB)介质,以增强对被NB污染的地下水的需氧生物修复。结果显示,从bio-PRB介质中连续释放氧气15-20天后,NB去除率大于98.68%。在处理过程中,DO浓度达到8.0mg / L,降解NB的细菌能够耐受一定的pH条件。这种多面的生物PRB介质可同时吸附和生物降解NB,释放氧气并用磷酸盐缓冲液中和pH。这项研究的结果表明,这种生物PRB介质代表了一种被NB污染的地下水的高效原位生物修复方法。

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