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Optimising the operation of a MBR pilot plant by quantitative analysis of the membrane fouling mechanism

机译:通过膜污染机理的定量分析优化MBR中试装置的运行

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In order to optimize some operational conditions of MBR systems, a MBR pilot plant equipped with a submerged hollow fibre membrane module was employed in this study. The pilot MBR was fed with real municipal wastewater and the filtration flux, backwashing interval, aeration frequency and temperature 11 were varied. A filtration flux below 25 l/m(2) h is generally recommended, at below this flux, the MBR operated at sub-critical flux conditions, the filter cake was minimized and membrane fouling was mainly attributed to the membrane pore blocking. Moreover, the membrane fouling, at below 25 l/m(2) h, was more reversible to backwashing; above this value, backwashing became less efficient to clean the membrane. Less frequent backwashing (e.g. 600 s filtration/45 s backwashing) decreased the amount of fouling irreversible to backwashing and its performance was superior to that of frequent backwashing (e.g. 200 s filtration/15 s backwashing). The MBR suffered more fouling at low temperature conditions (e.g. at 13-14 degrees C) than at high temperature conditions (e.g. at 17-18 degrees C). A conceptual model was built up and successfully interpreted this temperature effect.
机译:为了优化MBR系统的某些运行条件,本研究中使用了配备有浸没式中空纤维膜组件的MBR中试设备。中试MBR注入了真实的市政废水,并且过滤通量,反冲洗间隔,曝气频率和温度11均发生了变化。通常建议过滤通量低于25 l / m(2)h,在此通量以下,MBR在亚临界通量条件下运行,滤饼最小化,膜污染主要归因于膜孔堵塞。此外,低于25 l / m(2)h的膜结垢更容易逆洗;高于该值,反洗对膜的清洁效率降低。较低的反冲洗次数(例如600 s过滤/ 45 s反冲洗)减少了不可逆洗的结垢量,其性能优于频繁的反冲洗(例如200 s过滤/ 15 s反冲洗)。 MBR在低温条件下(例如13-14摄氏度)比在高温条件下(例如17-18摄氏度)遭受更多的污染。建立了一个概念模型,并成功地解释了这种温度效应。

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