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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Discrepant membrane fouling of partial nitrification and anammox membrane bioreactor operated at the same nitrogen loading rate
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Discrepant membrane fouling of partial nitrification and anammox membrane bioreactor operated at the same nitrogen loading rate

机译:在相同的氮负载速率下运行的部分硝化和厌氧氨氧化膜生物反应器的膜结垢差异

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In this study, two times more serious membrane fouling was found in anammox membrane bioreactor, compared to partial nitrification membrane bioreactor (PN-MBR) operated at the same nitrogen loading rate. By protein, polysaccharide, amino acids and functional groups analysis, it was found that the discrepancy in membrane fouling was virtually due to the difference in microbial products of nitrifiers and anammox bacteria. Protein and polysaccharide were main foulants on membrane surface; meanwhile theirs content and ratio in the EPS, supernatant and membrane surface were significantly different in PN-MBR and anammox-MBR. The anammox metabolism products contained much more hydrophobic organics, hydrophobic amino acids, and hydrophobic functional groups than nitrifiers. A mass of anammox bacteria as well as hydrophobic metabolism products deposited on the hydrophobic membrane surface and formed serious fouling. In further, hydrophilic modification is more urgently needed to mitigate membrane fouling when running anammox-MBR, than PN-MBR. (C) 2016 Published by Elsevier Ltd.
机译:在这项研究中,厌氧膜生物反应器的严重膜污染是在相同氮负荷率下运行的部分硝化膜生物反应器(PN-MBR)的两倍。通过蛋白质,多糖,氨基酸和官能团的分析,发现膜结垢的差异实际上是由于硝化器和厌氧菌的微生物产物的差异所致。蛋白质和多糖是膜表面的主要污垢。同时,PN-MBR和anammox-MBR在EPS,上清液和膜表面的含量和比例有显着差异。厌氧氨氧化代谢产物比硝化剂含有更多的疏水性有机物,疏水性氨基酸和疏水性官能团。大量的厌氧细菌以及疏水性代谢产物沉积在疏水性膜表面并形成严重污垢。此外,与PN-MBR相比,运行厌氧氨氧化-MBR时更迫切需要亲水改性,以减轻膜污染。 (C)2016由Elsevier Ltd.出版

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