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Submerged anaerobic membrane bioreactor for low-strength wastewater treatment: Effect of HRT and SRT on treatment performance and membrane fouling

机译:用于低强度废水处理的浸没式厌氧膜生物反应器:HRT和SRT对处理性能和膜污染的影响

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摘要

Three 6-L submerged anaerobic membrane bioreactors (SAnMBRs) with solids retention times (SRTs) of 30, 60 and infinite days were setup for treating synthetic low-strength wastewater at hydraulic retention times (HRTs) of 12, 10 and 8 h. Total COD removal efficiencies higher than 97% were achieved at all operating conditions. Maximum biogas production rate was 0.056 L CHVg MLVSS d at an infinite SRT. A shorter HRT or longer SRT increased biogas production due to increased organic loading rate or enhanced dominancy of methanogenics. A decrease in HRT enhanced growth of biomass and accumulation of soluble microbial products (SMP), which accelerated membrane fouling. A drop in carbohydrate to protein ratio also inversely affected fouling. At 12-h HRT, the effect of SRT on biomass concentration in SAnMBRs was negligible and membrane fouling was controlled by variant surface modification due to different SMP compositions, i.e., higher carbohydrate and protein concentrations in SMP at longer SRT resulted in higher membrane fouling rate. At 8 and 10-h HRTs, infinite SRT in SAnMBR caused highest MLSS and SMP concentrations, which sped up particle deposition and biocake/biofilm development. At longer SRT, lower extracellular polymeric substances reduced flocculation of particulates and particle sizes, further aggravated membrane fouling.
机译:设置了三个固液保留时间(SRT)为30、60和无限天的6升浸入式厌氧膜生物反应器(SAnMBR),用于在12、10和8 h的水力保留时间(HRT)下处理合成的低强度废水。在所有操作条件下,COD去除总效率均高于97%。在无穷大的SRT下,最大沼气生产率为0.056 L CHVg MLVSS d。较短的HRT或较长的SRT由于增加了有机负荷率或增强了产甲烷作用而增加了沼气的产生。 HRT的降低会增强生物量的生长和可溶性微生物产物(SMP)的积累,从而加速膜污染。碳水化合物与蛋白质之比的下降也反过来影响结垢。在HRT 12 h时,SRT对SAnMBRs中生物质浓度的影响可忽略不计,并且由于不同的SMP组成,通过变型表面改性控制了膜结垢,即,较长SRT时SMP中较高的碳水化合物和蛋白质浓度导致较高的膜结垢率。在8小时和10小时的HRT时,SAnMBR中的无限SRT导致最高的MLSS和SMP浓度,从而加速了颗粒沉积和生物饼/生物膜的发育。在较长的SRT下,较低的细胞外聚合物减少了颗粒的絮凝和粒径,进一步加剧了膜的结垢。

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