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Remediation of chlorophenol- and phenol-contaminated groundwater by a sequencing batch biofilm reactor

机译:序批式生物膜反应器修复氯酚和苯酚污染的地下水

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摘要

The paper describes the results of an investigation aimed at evaluating suitability of a lab-scale Sequencing Batch Biofilm Reactor (SBBR) for the remediation of groundwater contaminated by phenol (P) and 2-chlorophenol (2-CP). Kinetics of compound degradation was determined along the bed height in the absence and in presence of effluent recirculation, and with different influent composition (compounds fed separately or in combination in the same stream). SBBR performances with and without recirculation were very satisfactory for all the influent compositions: the system showed 99% removal efficiencies for both phenol and 2-CP and their complete removal was always achieved far before the end of react. In the presence of recirculation, the concentration gradient established during fill was rapidly eliminated and an even biomass distribution along the bed height was formed. Consequently, an acceleration of the elimination process was observed, particularly for phenol that was mostly removed in the first hour of the cycle. When the compounds were fed simultaneously, 2-CP removal kinetics improved probably due to cometabolism. The adsorption phenomena of the toxic compounds on the packing material were studied also, showing about 50% COD removal after 7 hours contact time.
机译:本文描述了旨在评估实验室规模的测序批生物膜反应器(SBBR)用于修复被苯酚(P)和2-氯苯酚(2-CP)污染的地下水的适用性的研究结果。在不存在和存在流出物再循环的情况下,在进水组成不同(化合物分别进料或在同一物流中组合进料)的情况下,沿着床高确定化合物降解的动力学。对于所有进水组合物,无论有无再循环,SBBR的性能都非常令人满意:该系统对苯酚和2-CP的去除效率均为99%,并且它们的完全去除总是在反应结束之前完成的。在存在再循环的情况下,填充过程中建立的浓度梯度被迅速消除,并且形成了沿床层高度均匀的生物量分布。因此,观察到消除过程的加速,特别是对于在循环的第一小时中大部分被除去的苯酚。当化合物同时进料时,2-CP去除动力学可能由于新陈代谢而得到改善。还研究了有毒化合物在包装材料上的吸附现象,表明在接触7小时后,COD的去除率约为50%。

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