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Modeling of submerged membrane bioreactor process for wastewater treatment

机译:淹没膜生物反应器工艺的造型污水处理

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In this study, a mathematical model has been developed for the submerged membrane bioreactor (SMBR) combining the activated sludge model No.1 (ASM1) with a membrane fouling model. The ASM1 was modified to take account into biological characteristics of the SMBR process, and the resistance-in-series model was integrated into the modified ASM1 to describe membrane fouling. Four additional 1st-order linear differential equations were newly established to describe the fate of soluble microbial products (SMP) and its effects on membrane fouling. Using the model developed here, one can easily predict not only effluent quality but also membrane fouling behavior during the SMBR process. From numerical experiments, F/M ratio and SRT are found to be critical factors controlling SMP concentration in reactor. It also appears that SMP plays an important role in membrane fouling and effluent quality as well. The model developed in this study would provide a useful tool in optimizing operation conditions as well as design parameters for a SMBR system.
机译:在该研究中,已经开发了一种数学模型,用于将活性污泥模型No.1(ASM1)与膜污垢模型组合的浸没式膜生物反应器(SMBR)开发。 ASM1被修改以考虑SMBR工艺的生物学特性,并且串联模型集成到改进的ASM1中以描述膜污垢。新建立了四个额外的1阶线性微分方程,以描述可溶性微生物产品(SMP)的命运及其对膜污染的影响。使用此处开发的模型,可以轻松预测流出质量,而且在SMBR过程中也可以容易地预测膜污染行为。根据数值实验,F / M比和SRT被发现是控制反应器中SMP浓度的关键因素。似乎SMP也在膜污垢和污水质量中起着重要作用。本研究开发的模型将提供有用的工具,可以优化操作条件以及SMBR系统的设计参数。

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