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处理后生活污水死端超滤中的生物聚合物污染。

Biopolymer fouling in dead-end ultrafiltration of treated domestic wastewater.

机构信息

Technische Universität Berlin, Department of Water Quality Control, Sekr. KF4, Strasse des 17, Juni 135, Berlin 10623, Germany.

出版信息

Water Res. 2010 Oct;44(18):5212-21. doi: 10.1016/j.watres.2010.06.039. Epub 2010 Jun 23.

DOI:10.1016/j.watres.2010.06.039
PMID:20637488
Abstract

Ultrafiltration (UF) is considered as a suitable treatment process after conventional wastewater treatment to produce reuse water. Nevertheless, fouling affects the performance of UF to a large extent. As biopolymers (mostly macro polysaccharide-like and protein-like molecules) have been identified as major foulants affecting the filterability of water in dead-end UF, the present study focuses on investigating the reversibility of biopolymer fouling occurring at different biopolymer mass loads to the membrane and under different compression conditions. UF-membrane stirred cell tests using five cycles show that filtering treated domestic wastewater leads to a significant permeability reduction due to the accumulation of biopolymers on the membrane surface and/or in the membrane pores. Although they can be removed by hydraulic backwashing, an increased mass load of biopolymers reduces the removal efficiency. This correlation was verified using a UF pilot plant filtering treated wastewater (secondary effluent or slow sand filtrate). The effect of biopolymer fouling layer deformation on its reversibility was studied using multi-cycle membrane filtration tests under different filtration pressures. The results showed that higher filtration pressures result in more compact biopolymer fouling which is more difficult to be hydraulically backwashed. This phenomenon was also confirmed by pilot-scale UF experiments.

摘要

超滤(UF)被认为是传统废水处理之后生产再利用水的一种合适的处理工艺。然而,污染在很大程度上影响了 UF 的性能。由于生物聚合物(主要是类似大分子多糖和蛋白质样的分子)已被确定为影响死端 UF 中水体过滤性能的主要污染物,因此本研究重点在于研究不同生物聚合物质量负荷和不同压缩条件下发生的生物聚合物污染的可恢复性。使用五个循环的 UF 膜搅拌池测试表明,过滤处理后的生活污水会导致膜表面和/或膜孔中生物聚合物的积累,从而导致渗透率显著降低。尽管可以通过水力反冲洗去除,但生物聚合物质量负荷的增加会降低去除效率。这一相关性通过使用 UF 中试装置过滤处理后的废水(二级出水或慢滤砂滤出水)得到了验证。通过在不同过滤压力下进行多循环膜过滤测试,研究了生物聚合物污染层变形对其可恢复性的影响。结果表明,较高的过滤压力会导致更致密的生物聚合物污染,更难以通过水力反冲洗去除。这一现象也通过 UF 中试实验得到了证实。

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引用本文的文献

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Architecture, component, and microbiome of biofilm involved in the fouling of membrane bioreactors.膜生物反应器污染中涉及的生物膜的结构、组成和微生物群落。
NPJ Biofilms Microbiomes. 2017 Feb 23;3:5. doi: 10.1038/s41522-016-0010-1. eCollection 2017.