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Analysis of membrane fouling with porous membrane filters by microbial suspensions for autotrophic nitrogen transformations

机译:微生物悬浮液用于自养氮转化的多孔膜滤池膜污染分析

摘要

Membrane fouling was observed using microbial suspensions obtained from a sequencing batch reactor operated for simultaneous partial nitrification and anammox. Combined effects of particle size distributions in microbial suspensions taken from the SBR and membrane pore sizes on membrane fouling are presented. With the smallest membrane pore size tested (0.1 μm), a supernatant solution led to higher fouling rate than the mixed liquor suspension having relatively bigger particle sizes and larger quantity. However, the fouling rate with two different solutions was not different significantly as the glass-fiber filter (1.2 μm pore size) was used. For the smallest membrane pore size, best fittings based upon pore blocking models showed that cake filtration played a key role in the membrane fouling. However, intermediate pore blocking was classified as dominant fouling mechanisms for the glass-fiber filter tested. This study showed that the surface morphology of the fouling layer deposited on membrane surface could vary depending upon the surface properties of the fresh membranes and glass-fiber filter such as surface roughness. A higher surface roughness of the membrane resulted in a higher fouling rate with rougher surface of the fouling layer formed on the membrane. This study also suggested that soluble microbial products (SMP) resulted in a higher flux decline than that observed with extracellular polymeric substances (EPS) in the supernatant solution taken from the anammox SBR.
机译:使用从同时进行部分硝化和厌氧氨氧化操作的测序间歇反应器获得的微生物悬浮液观察到了膜结垢。提出了从SBR提取的微生物悬浮液中粒径分布和膜孔径对膜污染的综合影响。在测试的最小膜孔径(0.1μm)下,上清液的结垢率高于具有相对较大的粒径和较大量的混合液悬浮液。但是,两种不同溶液的结垢率没有明显差异,因为使用的是玻璃纤维过滤器(孔径为1.2μm)。对于最小的膜孔径,基于孔阻塞模型的最佳拟合显示滤饼过滤在膜结垢中起关键作用。然而,对于测试的玻璃纤维过滤器,中间的孔阻塞被认为是主要的结垢机理。这项研究表明,沉积在膜表面的污垢层的表面形态会根据新鲜膜和玻璃纤维过滤器的表面特性(例如表面粗糙度)而变化。膜的较高表面粗糙度导致较高的结垢率,并且在膜上形成的结垢层的表面较粗糙。这项研究还表明,与取自厌氧氨纶SBR的上清液相比,可溶性微生物产物(SMP)导致通量下降的幅度高于细胞外聚合物质(EPS)的下降幅度。

著录项

  • 作者

    Aslam M; Lee PH; Kim J;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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