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Character Of Extracellular Polymericsubstances And Soluble Microbialrnproducts And Their Effect On Membranernhydraulics During Airlift Membranernbioreactor Applications

机译:气浮膜生物反应器应用中细胞外聚合物和可溶性微生物产物的特性及其对膜液压的影响

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The effect of extracellular polymeric substances and soluble microbial products developed from wastewater and mature landfill leachate biomass was assessed using a pilot-scale membrane bioreactor operating polymeric and ceramic air-lift sidestream multichannel membranes. The plant was operated under identical conditions of sludge retention time, system hydrodynamics ,and parity of food-to-microorganism ratios. Biomass samples were extracted and fractionated (fixed and bound material, carbohydrate and protein extracts) and chemically and physically analyzed with the feedwaters. Both ceramic and polymeric membranes were tested and the critical flux (J_C) determined according to the classical flux-step analysis. Although permeability (K) of both materials reduced with increasing flux (J), the ceramic material had a higher resistance to fouling, demonstrating a higher K (by a factor of 1.2 and 3.2 for wastewater and leachate, respectively, at J of 30 L · m~(-2) ·h~(-1)) and lower fouling rate (dP/dt) (by more than an order of magnitude at the same J) than the polymeric membrane. Evidence suggests that deterioration of membrane permeability resulting from leachate biomass arises from the feedwater itself, rather than the products derived from the biomass, and that colloidal and/or soluble total organic carbon is primarily responsible for it.
机译:使用中试规模的膜生物反应器操作聚合物和陶瓷气提侧流多通道膜,评估了废水和成熟的垃圾渗滤液生物质产生的细胞外聚合物和可溶性微生物产物的作用。该工厂在相同的条件下运行,即污泥保留时间,系统流体动力学以及食物与微生物的比例均等。提取和分离生物质样品(固定和结合的物质,碳水化合物和蛋白质提取物),并用给水进行化学和物理分析。测试了陶瓷膜和聚合物膜,并根据经典的通量步长分析确定了临界通量(J_C)。尽管两种材料的渗透率(K)随通量(J)的增加而降低,但陶瓷材料具有更高的抗结垢性,显示出更高的K(在J为30 L时,废水和渗滤液的K分别为1.2和3.2倍)。 ·m〜(-2)·h〜(-1))和结垢率(dP / dt)(在同一J下降低了一个数量级)比聚合物膜低。有证据表明,渗滤液生物质导致的膜渗透性下降是由给水本身而不是由生物质衍生的产物引起的,胶体和/或可溶性总有机碳是造成这种现象的主要原因。

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