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Analysis of reverse osmosis membrane behaviors in a long-term verification test

机译:长期验证测试中反渗透膜行为的分析

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Almost all of reverse osmosis (RO) desalination data have been reported in terms of flux and salt rejection. Fouling phenomena have also been reported in raw data. Such a way of presenting data is misleading to know the real causes of membrane fouling, and thus the reliable design of RO unit becomes impossible. The correct presentation of RO data should be in the form of transport coefficients of a membrane based on the correct transport equations. In this paper a couple of solution-diffusion type equations is cpmpared carefully with those proposed by Spiegler and Kedem. The former uses two parameters, A and B, while the latter uses three, namely, L_p, σ, and P. In long run experiments, however, the only data available are flux and rejection, and it is impossible to determine three coefficients from two parameters. Since RO membranes used for seawater desalination show their σ is very close to 1, it can be shown that value B is very close to P, and it is concluded the former type of equation can be effectively used for a long-run data analysis. An example of such analysis is presented based on the data taken by WRPC, Japan, at Chigasaki, with 12″ Hollosep hollow fiber modules made by Toyobo. Results showed an interesting trend of variation of A and B values and their relation with time. Although real causes of membrane fouling phenomena are not clear at this stage, the method proposed here is valid and should be extended further to compile such data, which will be related to the physical and chemical changes of membranes and their materials.
机译:几乎所有的反渗透(RO)淡化数据都已根据通量和盐分排除率进行了报道。在原始数据中也已经报道了结垢现象。这种呈现数据的方式会误导人们了解膜污染的真正原因,因此RO装置的可靠设计变得不可能。 RO数据的正确表示应基于正确的传输方程以膜的传输系数形式进行。在本文中,使用Spiegler和Kedem提出的方程仔细地求解了两个解扩散方程。前者使用两个参数A和B,而后者使用三个参数L_p,σ和P。但是,在长期实验中,唯一可用的数据是通量和抑制,无法从中确定三个系数。两个参数。由于用于海水淡化的反渗透膜的σ值非常接近1,因此可以证明B值非常接近P,可以得出结论,前一种方程式可以有效地用于长期数据分析。基于日本WRPC在Chigasaki的数据,并使用Toyobo制造的12英寸Hollosep中空纤维组件,给出了这种分析的一个例子。结果显示了一个有趣的趋势,即A和B值的变化及其与时间的关系。尽管目前尚不清楚膜结垢现象的真正原因,但此处提出的方法是有效的,应进一步扩展以汇编此类数据,这将与膜及其材料的物理和化学变化有关。

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