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Study on biofouling mechanism in IMBR for wastewater treatment with different temperatures

机译:不同温度的废水处理生物铜机制研究

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The main goal of the present study was to examine the operating characteristics and mechanisms of membrane fouling in integrated membrane bioreactors (IMBRs) at different temperatures. Two IMBRs, each with identical dimensions and configurations, were used in the study using synthetic domestic sewage at a low temperature (10 degrees C) and high temperature (25 degrees C). The results indicated that the removal efficiency of chemical oxygen demand reached 93-96%, but the membrane contribution rate of IMBR2 (10 degrees C) was higher than that of IMBR1 (25 degrees C). The separation burden of the membrane on organic compounds increased at low temperature. which may have sped up the rate of membrane biofouling. The absolute rate of trans-membrane pressure build-up was faster at low temperature, leading to shorter IMBR operating times. Soluble microbial products (SMPs) and extracellular polymeric substances (EPSs) in the IMBRs significantly increased at low temperature. These substances intensified deflocculation, with an accompanying reduction of floc size and the release of EPSs at low temperature, which facilitated the formation of cake foulants on the surface, covering the entire membrane area. The protein and polysaccharide concentrations of SMPs and EPSs in the IMBRs were correlated with the concentration of C8-HSL. It was demonstrated that temperature affected the concentration of C8-HSL, which controlled the excretion of EPSs and SMPs and thus the membrane biofouling process.
机译:本研究的主要目的是检查不同温度下集成膜生物反应器(IMBR)中膜污染的操作特性和机制。在低温(10℃)和高温(25℃)下,使用合成型污水的研究中使用了两个具有相同尺寸和配置的IMBRS。结果表明,化学需氧量的去除效率达到93-96%,但IMBR2(10℃)的膜贡献率高于IMBR1(25℃)。在低温下,膜对有机化合物的分离负担增加。这可能会加速膜生物污染的速度。在低温下跨膜压力堆积的绝对速率更快,导致IMBR操作时间较短。在低温下,可溶性微生物产品(SMPS)和细胞外聚合物物质(EPS)显着增加。这些物质增强了脱絮,随着絮凝尺寸的减少和低温下的EPS释放,便于在表面上形成蛋糕污垢,覆盖整个膜面积。 IMBRS中的SMP和EPS的蛋白质和多糖浓度与C8-HSL的浓度相关。据证明,温度影响了C8-HSL的浓度,其控制了EPS和SMP的排泄,从而控制了膜生物磁化过程。

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