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Hybrid PAC-submerged membrane system for trace organics removal II: System simulation and application study

机译:混合PAC淹没膜系统去除痕量有机物II:系统仿真和应用研究

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摘要

The hybrid powdered activated carbon (PAC)-submerged microfiltration hollow fiber membrane system with air bubbling has been simulated at two operation strategies of batch and continuous PAC dosing for trace organics removal from water. The mathematical models were developed based on corresponding solute mass balance equations and the homogeneous surface diffusion model (HSDM), where the two kinetic parameters Ds and kf were obtained in Part 1 of this study. After verification with experiments using atrazine as the model trace organic compound, the developed models were used to predict the product water quality at various operating conditions. It was found that at the batch PAC dosing mode, the trace organic removal can be improved by increasing the bubbling rate or increasing the operation flux. While at the continuous PAC dosing mode, the target compound removal is independent on the bubbling rate, which suggested the possibility of reducing energy consumption by inducing a low bubbling rate. Besides, lower operation flux shows more benefit because of the longer hydraulic retention time. The simulation can provide a better understanding of the system and assist in evaluating various operation strategies properly.
机译:通过分批和连续PAC加液两种操作策略模拟了带有气泡的混合粉末状活性炭(PAC)浸没式微滤中空纤维膜系统,以去除水中的痕量有机物。基于相应的溶质平衡方程和均质表面扩散模型(HSDM),建立了数学模型,其中在本研究的第1部分中获得了两个动力学参数Ds和kf。在使用at去津为模型的痕量有机化合物进行实验验证后,使用开发的模型预测各种操作条件下的产品水质。已经发现,在分批PAC定量给料模式下,可以通过增加鼓泡速率或增加操作通量来改善痕量有机物的去除。在连续PAC定量给料模式下,目标化合物的去除与鼓泡速率无关,这表明可以通过降低鼓泡速率来降低能耗。此外,由于更长的水力停留时间,较低的工作流量显示出更多的好处。仿真可以提供对系统的更好理解,并有助于正确评估各种操作策略。

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