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首页> 外文期刊>Water Science and Technology >Comparative investigation on the impact of polymeric substances on membrane fouling during sub-critical and critical flux operation of a municipal membrane bioreactor
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Comparative investigation on the impact of polymeric substances on membrane fouling during sub-critical and critical flux operation of a municipal membrane bioreactor

机译:市政膜生物反应器在亚临界和临界通量操作过程中聚合物对膜结垢影响的比较研究

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摘要

Soluble organic macromolecules are ubiquitous in activated sludge supernatant. For the operation of membrane bioreactors (MBR) this group of substances is considered as the dominant factor causing severe membrane fouling due to the concentration polarisation phenomenon. The well established critical flux concept for the characterisation of membrane bioreactor's operation limits is based on filtration data only. As there is an cause-and-effect relation between the partial retention of organic compounds and the limited flux according the critical flux concept the aim of this study was to draw a comparison between different permeate fluxes on the retention of organic macromolecules. Thus, a municipal pilot-scale MBR with three capillary hollow fibre membrane modules was operated in sub critical, critical and supercritical flux mode, respectively and the retention of macromolecules was quantified by size exclusion chromatography. Three permeate extraction pumps allow a simultaneous operation with different operational conditions for each membrane module and proved the crucial impact of permeate flux on the fouling rate. The interchange of these conditions gave evidence of an optimised start-up procedure for MBRs characterised by higher permeate fluxes. An increased flux causes both a higher retention of soluble macromolecules and subsequent a higher fouling rate.
机译:可溶性有机大分子普遍存在于活性污泥上清液中。对于膜生物反应器(MBR)的操作,由于浓度极化现象,这组物质被认为是导致严重膜污染的主要因素。公认的用于表征膜生物反应器操作极限的临界通量概念仅基于过滤数据。由于根据临界通量概念有机化合物的部分保留与有限通量之间存在因果关系,因此本研究的目的是对不同渗透通量对有机大分子的保留进行比较。因此,具有三个毛细管中空纤维膜组件的市政中试规模MBR分别在亚临界,临界和超临界通量模式下运行,并且通过尺寸排阻色谱法定量了大分子的保留。三个渗透抽水泵允许每个膜组件在不同的操作条件下同时运行,并证明了渗透通量对结垢率的关键影响。这些条件的互换为以较高的通量流量为特征的MBRs的启动程序提供了优化的证据。通量的增加既引起可溶性大分子的较高保留,又导致较高的结垢率。

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