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Understanding the mechanisms of trace organic contaminant removal by high retention membrane bioreactors: a critical review

机译:理解高保留膜生物反应器的痕量有机污染物去除机制:批判性综述

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摘要

High retention membrane bioreactors (HR-MBR) combine a high retention membrane separation process such as membrane distillation, forward osmosis, or nanofiltration with a conventional activated sludge (CAS) process. Depending on the physicochemical properties of the trace organic contaminants (TrOCs) as well as the selected high retention membrane process, HR-MBR can achieve effective removal (80–99%) of a broad spectrum of TrOCs. An in-depth assessment of the available literature on HR-MBR performance suggests that compared to CAS and conventional MBRs (using micro- or ultra-filtration membrane), aqueous phase removal of TrOCs in HR-MBR is significantly better. Conceptually, longer retention time may significantly improve TrOC biodegradation, but there are insufficient data in the literature to evaluate the extent of TrOC biodegradation improvement by HR-MBR. The accumulation of hardly biodegradable TrOCs within the bioreactor of an HR-MBR system may complicate further treatment and beneficial reuse of sludge. In addition to TrOCs, accumulation of salts gradually increases the salinity in bioreactor and can adversely affect microbial activities. Strategies to mitigate these limitations are discussed. A qualitative framework is proposed to predict the contribution of the different key mechanisms of TrOC removal (i.e., membrane retention, biodegradation, and sorption) in HR-MBR.
机译:高保留膜生物反应器(HR-MBR)结合了高保留膜分离方法,例如膜蒸馏,正常渗透或纳米过滤,具有常规的活性污泥(CAS)方法。取决于痕量有机污染物(TROC)的物理化学性质以及所选择的高保留膜方法,HR-MBR可以达到有效的去除(80-99%)广谱的TROC。对HR-MBR性能的可用文献的深入评估表明,与CAS和常规的MBR(使用微型或超过滤膜)相比,HR-MBR中的TROC水相去除明显更好。概念上,更长的保留时间可以显着提高TROC生物降解,但文献中存在不充分的数据,以评估HR-MBR的TROC生物降解改善程度。 HR-MBR系统的生物反应器内几乎可生物降解的TROC的积累可以使污泥的进一步处理和有益的再利用复杂化。除了TROC之外,盐的积累逐渐增加生物反应器中的盐度,并且可能对微生物活性产生不利影响。讨论了减轻这些限制的策略。提出了一种定性框架,以预测HR-MBR中的TROC去除(即膜保留,生物降解和吸附)不同关键机制的贡献。

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