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A triple fouling layers perspective on evaluation of membrane fouling under different scenarios of membrane bioreactor operation

机译:在膜生物反应器不同操作场景下对膜污染的评估的三重污染层透视

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摘要

One of the main factors affecting membrane fouling in MBRs is operational conditions. In this study the influence of aeration rate, filtration mode, and SRT on hollow fiber membrane fouling was investigated using a triple fouling layers perspective. The sludge microbial population distribution was also determined by PCR method. Through various applied operational scenarios the optimal conditions were: aeration rate of 15 LPM; relaxation mode with 40s duration and 8 min. interval; and SRT of 30 days. The similarity between SMP variations in triple fouling layers with its corresponding hydraulic resistance confirmed the effect of SMP on membrane fouling. Among three fouling fractions, the upper (rinsed) layer found to have the most effect on membrane fouling which implies the critical role of aeration, but as for multilateral effects of aeration, the optimal aeration rate should be determined more precisely. Relaxation interval was more effective than its duration for fouling control. SRT variations in addition to influencing the amount of SMP, also affect on the structure of these material. At longer SRTs (20, 30 days) a greater percentage of SMP could penetrate into the membrane pores and for shorter SRTs they accumulate more on membrane surface. Results showed that there is a very good correlation between total hydraulic resistance (Log R) and protein to carbohydrate ratio at the rinsed layer (P1/C1). Considering significant effects of aeration and SRT conditions on this ratio (according to data), it is very determinative to apply the optimal aeration and SRT conditions.
机译:影响MBRs中膜污染的主要因素之一是运行条件。在这项研究中,使用三重污垢层的角度研究了曝气速率,过滤模式和SRT对中空纤维膜污垢的影响。还通过PCR方法确定了污泥微生物种群分布。通过各种应用操作场景,最佳条件为:曝气速率为15 LPM;持续时间40秒8分钟的放松模式。间隔;和30天的SRT。三重污垢层中SMP变化与相应的水力阻力之间的相似性证实了SMP对膜结垢的影响。在三个结垢部分中,上层(漂洗)层对膜结垢的影响最大,这暗示了通气的关键作用,但是对于多边通气效果,应更精确地确定最佳通气率。弛豫间隔比污垢持续时间更有效。 SRT的变化除了影响SMP的数量外,还会影响这些材料的结构。在更长的SRT(20、30天)下,更大比例的SMP可能会渗透到膜孔中;对于更短的SRT,它们会在膜表面积累更多。结果表明,在冲洗后的水层(P1 / C1),总水力阻力(Log R)与蛋白质与碳水化合物的比例之间存在非常良好的相关性。考虑到曝气和SRT条件对该比例的重大影响(根据数据),应用最佳的曝气和SRT条件非常重要。

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