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Analysis of the Flux Performance of Different RO/NF Membranes in the Treatment of Agroindustrial Wastewater by Means of the Boundary Flux Theory

机译:边界通量理论分析不同RO / NF膜在处理工业废水中的通量性能

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摘要

Dynamic membrane system behaviour must be adequately addressed to avoid process unfeasibility. The lack of proper analysis will mean relying on erroneous permeate flux values in the system design, which will lead to quick and/or steady high fouling rates. In this paper, the authors present additional data supporting the boundary flux theory as a helpful tool for membrane engineers to carefully avoid process failures. By fitting the dynamic permeate flux data to the boundary flux model, it was possible to calculate the β fouling index for the three selected membranes (one nanofiltration (NF) and two reverse osmosis (RO) ones). The dynamic flux given by the low-pressure RO membrane did not follow sub-boundary operating conditions, since a sharp flux loss was measured throughout the whole operating cycle, pinpointing that supra-boundary flux conditions were governing the system. This was supported by the calculated value of the β fouling parameter, which resulted to be in the order of ten times higher for this membrane. However, the values of β→0 for the SC-RO and DK-NF ones, supported by the very low value of the sub-boundary fouling parameter α (0.002 and 0.007 L·h−1·m−2·bar−2, respectively), ensure nearly boundary operating conditions for these membranes.
机译:必须适当解决动态膜系统的行为,以避免工艺不可行。缺乏适当的分析将意味着在系统设计中依赖错误的渗透通量值,这将导致快速和/或稳定的高结垢率。在本文中,作者提出了支持边界通量理论的其他数据,这是膜工程师谨慎避免工艺失败的有用工具。通过将动态渗透通量数据拟合到边界通量模型中,可以计算出三个选定膜(一个纳滤(NF)和两个反渗透(RO))的β结垢指数。低压反渗透膜提供的动态通量不遵循亚边界运行条件,因为在整个运行周期中都测量到急剧的通量损失,这恰好说明了超边界通量条件正在控制系统。 β结垢参数的计算值对此提供了支持,对于该膜,结果约为该膜的十倍。但是,SC-RO和DK-NF的β→0值得到了子边界污垢参数α的极低值(0.002和0.007 L·h -1 · m −2 ·bar −2 ),确保这些膜的接近极限工作条件。

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