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膜生物反应器在双酚A极端浓度下的性能

Performance of a membrane bioreactor in extreme concentrations of bisphenol A.

作者信息

Ouarda Yassine, Zolfaghari Mehdi, Drogui Patrick, Seyhi Brahima, Buelna Gerardo, Dubé Rino

机构信息

Institut National de la Recherché Scientifique-Eau, Terre et Environnement (INRS-ETE), Université du Québec, 490 rue de la Couronne, Québec, QC, Canada, G1 K 9A9 E-mail:

Centre des technologies de l'eau, 696 Avenue Sainte-Croix, Montréal, QC, Canada, H4 L 3Y2.

出版信息

Water Sci Technol. 2018 Mar;77(5-6):1505-1513. doi: 10.2166/wst.2018.011.

DOI:10.2166/wst.2018.011
PMID:29595153
Abstract

In this study, a submerged membrane bioreactor was used to study the effect of low and high bisphenol A (BPA) concentration on the sludge biological activity. The pilot was operated over 540 days with hydraulic retention time and solid retention time of 5.5 hours and 140 days, respectively. As a hydrophobic compound, BPA was highly adsorbed by activated sludge. In lower concentrations, the biodegradation rate remained low, since the BPA concentration in the sludge was lower than 0.5 mg/g TS; yet, at an influent concentration up to 15 mg/L, the biodegradation rate was increasing, resulting in 99% BPA removal efficiency. The result for chemical oxygen demand removal showed that BPA concentration has no effect on the heterotrophic bacteria that were responsible for the organic carbon degradation. In higher concentrations, up to 16 mg of BPA was used for each gram of sludge as a source of carbon. However, the activity of autotrophic bacteria, including nitrifiers, was completely halted in the presence of 20 mg/L of BPA or more. Although nitrification was stopped after day 400, ammonia removal remained higher than 70% due to air stripping. Assimilation by bacteria was the only removal pathway for phosphorus, which resulted in an average 35% of P-PO removal efficiency.

摘要

在本研究中,使用浸没式膜生物反应器研究了低浓度和高浓度双酚A(BPA)对污泥生物活性的影响。中试装置运行了540天,水力停留时间和固体停留时间分别为5.5小时和140天。作为一种疏水性化合物,BPA被活性污泥高度吸附。在较低浓度下,生物降解率仍然较低,因为污泥中的BPA浓度低于0.5mg/g TS;然而,在进水浓度高达15mg/L时,生物降解率在增加,BPA去除效率达到99%。化学需氧量去除结果表明,BPA浓度对负责有机碳降解的异养细菌没有影响。在较高浓度下,每克污泥使用高达16mg的BPA作为碳源。然而,在存在20mg/L或更高浓度的BPA时,包括硝化细菌在内的自养细菌的活性完全停止。尽管在第400天后硝化作用停止,但由于空气吹脱,氨去除率仍高于70%。细菌同化是磷的唯一去除途径,导致平均35%的P-PO去除效率。

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