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Optimisation of MF membrane cleaning protocol in an Indirect Potable Reuse (IPR) scheme

机译:间接饮用重复使用(IPR)方案中的MF膜清洁协议的优化

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The control of fouling in a microfiltration process dedicated to wastewater reuse demands an adequate chemical cleaning procedure. A study has been conducted to optimise this using Box-Behnken design (BBD) associated with multiple linear regression. Bench-scale modules, formed with hollow fibre membrane fouled through use on a pilot plant, were employed to assess the cleaning efficiency. Parameters studied were chemical type (oxidising, alkaline and acidic), reagent concentration, cleaning temperature and soak time. Oxidising reagents were found the most efficient followed by alkali and acid reagents. NaOCl at pH 10 was the most efficient cleaning reagent allowing 100% permeability recovery. An envelope of optimum parameters was defined from the bench scale study for this reagent. The model was found to accurately represent the plant performance for permeability measurements conducted at the same temperature on the bench-scale as that for plant operation. The effect and significance of the parameters were found to vary from one reagent to another one, underlining the importance of the assessing the entire parameter value range and the benefit offered by BBD for carrying out this efficiently with the fewest number of experiments.
机译:在专用于废水回用的微滤过程中,结垢的控制需要适当的化学清洁程序。已经进行了一项研究,以使用与多元线性回归相关的Box-Behnken设计(BBD)对此进行优化。通过在中试装置上使用中形成污垢的中空纤维膜形成的台式模块,用于评估清洁效率。研究的参数是化学类型(氧化,碱性和酸性),试剂浓度,清洗温度和浸泡时间。发现氧化剂最有效,其次是碱和酸试剂。 pH 10的NaOCl是最有效的清洁剂,可100%渗透率恢复。从该试剂的台式研究中定义了最佳参数的范围。发现该模型可以准确地代表在与工厂运行相同的工作台规模温度下进行的渗透率测量中的工厂性能。发现参数的效果和重要性因一种试剂而异,强调了评估整个参数值范围的重要性,以及BBD提供的用最少的实验次数即可有效执行此操作的好处。

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