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添加/不添加粉末活性炭的两个膜生物反应器中药物去除情况的比较。

Comparison of pharmaceutical removal in two membrane bioreactors with/without powdered activated carbon addition.

作者信息

Liu Ya-Ting, Xia Qing, Huang Wei-Wei, Yi Xue-Song, Dong Li-Li, Yang Fei

机构信息

Department of Environmental Science and Engineering, Hainan University Renmin Avenue 58 570228 Haikou Hainan Province P. R. China

出版信息

RSC Adv. 2022 Jul 21;12(32):20958-20967. doi: 10.1039/d2ra01686a. eCollection 2022 Jul 14.

Abstract

The present study investigates the removal of six selected pharmaceuticals from municipal wastewater in two membrane bioreactors (MBRs) with and without powdered activated carbon (PAC) addition. Two approaches were carried out for obtaining different carbon dosages related to the influent: (1) with a fixed solids retention time (SRT) and varying PAC concentrations; (2) with varying SRTs and a fixed PAC concentration. The results reveal that a PAC dosage related to influent of 21 mg L and SRT of 20 d are optimal. The first approach achieved a better removal performance than the second. The removal of amidotrizoic acid (up to 46%), bezafibrate (>92%) and iopromide (around 85%) were mainly caused by biological process, but were also enhanced by PAC addition. Efficient removal (>95%) of sulfamethoxazole, carbamazepine and diclofenac were highly dependent on the PAC dosage. However, carbamazepine shows re-metabolization properties during biological processing. Decreasing the SRT as done in the second approach, not only increased the PAC amount, but also decreased the mass of activated sludge and reduced the capability to degrade complex organic matter. Consequently, biodegradability and adsorbability played decisive roles in the removal of each compound.

摘要

本研究调查了在添加和不添加粉末活性炭(PAC)的两个膜生物反应器(MBR)中去除城市废水中六种选定药物的情况。采用了两种方法来获得与进水相关的不同碳剂量:(1)固定固体停留时间(SRT)并改变PAC浓度;(2)改变SRT并固定PAC浓度。结果表明,与进水相关的PAC剂量为21 mg/L且SRT为20 d是最佳的。第一种方法比第二种方法具有更好的去除性能。氨三唑酸(高达46%)、苯扎贝特(>92%)和碘普罗胺(约85%)的去除主要由生物过程引起,但PAC的添加也增强了去除效果。磺胺甲恶唑、卡马西平和双氯芬酸的高效去除(>95%)高度依赖于PAC剂量。然而,卡马西平在生物处理过程中表现出再代谢特性。如第二种方法那样降低SRT,不仅增加了PAC的用量,还减少了活性污泥的质量并降低了降解复杂有机物的能力。因此,生物降解性和吸附性在每种化合物的去除中起决定性作用。

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