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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effects of hydraulic retention time and bioflocculant addition on membrane fouling in a sponge-submerged membrane bioreactor
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Effects of hydraulic retention time and bioflocculant addition on membrane fouling in a sponge-submerged membrane bioreactor

机译:液压保留时间和生物絮凝剂在海绵浸没膜生物反应器中膜污染的影响

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The characteristics of activated sludge and membrane fouling were evaluated in a sponge-submerged membrane bioreactor (SSMBR) at different hydraulic retention times (HRTs) (6.67, 5.33 and 4.00 h). At shorter HRT, more obvious membrane fouling was caused by exacerbated cake layer formation and aggravated pore blocking. Activated sludge possessed more extracellular polymeric substances (EPS) due to excessive growth of biomass and lower protein to polysaccharide ratio in soluble microbial products (SMP). The cake layer resistance was aggravated by increased sludge viscosity together with the accumulated EPS and biopolymer clusters (BPC) on membrane surface. However, SMP showed marginal effect on membrane fouling when SSMBRs were operated at all HRTs. The SSMBR with Gemfloc (R) addition at the optimum HRT of 6.67 h demonstrated superior sludge characteristics such as larger floc size, less SMP in mixed liquor with higher protein/polysaccharide ratio, less SMP and BPC in cake layer, thereby further preventing membrane fouling. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在不同液压保留时间(HRT)(6.67,5.33和4.00小时)的海绵浸没膜生物反应器(SSMBR)中评价活性污泥和膜结垢的特性。在短时间内,通过加剧蛋糕层形成和加重孔隙阻断引起了更明显的膜污垢。活化污泥由于溶于微生物产品(SMP)中的生物质和低蛋白质的过度生长和降低蛋白质,具有更多细胞外聚合物物质(EPS)。通过在膜表面上增加污泥粘度,通过增加污泥粘度加剧滤饼层抗性。然而,当SSMBRS在所有HRT进行操作时,SMP对膜污染的边际效应。具有GEMFLOC(R)的SSMBR在6.67 H的最佳HRT中添加了较高的污泥特性,如较大的絮凝剂尺寸,混合液中的SMP较少,蛋白质/多糖比,蛋糕层中的SMP和BPC较少,从而进一步防止膜污垢。 (c)2016 Elsevier Ltd.保留所有权利。

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