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Preparation of pilot-scale inner skin hollow fiber pervaporation membrane module: Effects of dynamic assembly conditions

机译:中规模内皮中空纤维渗透膜组件的制备:动态组装条件的影响

摘要

The purpose of this study is to provide some fundamental understanding for the design of industrial hollow fiber pervaporation membrane module. Inner skin hollow fiber pervaporation membrane modules were fabricated by a dynamic negative pressure layer-by-layer (LbL) technique. The influences of dynamic negative pressure and recycling velocity of polyelectrolyte solutions on the formation of non-porous selective layer were firstly investigated using mini-modules during the dynamic assembly process. Since none of reported works dealt with the effects of packing density of hollow fiber module, pilot-scale modules (diameter x length = 1 in. x 20cm)were therefore prepared by filling different amounts of hollow fibers into a membrane shell. The experimental results show that the higher packing density of 500 m(2)/m(3) rendered both total flux and selectivity to decrease significantly. As for a I m long module that has been commonly used in industry, further investigations were conducted using a 1-m long hollow fiber module. The vacuum drop along the axial direction of hollow fibers was noted, especially near to the vacuum suction opening. Despite of this, the relatively high and stable selectivity could be obtained even the fiber length increased to 1 m. (C) 2009 Elsevier B.V. All rights reserved.
机译:这项研究的目的是为工业中空纤维渗透膜组件的设计提供一些基本的了解。皮肤内中空纤维渗透膜组件是通过动态负压逐层(LbL)技术制造的。首先在动态组装过程中使用微型模块研究了动态负压和聚电解质溶液的循环速度对无孔选择性层形成的影响。由于没有报道的文章涉及中空纤维组件的堆积密度的影响,因此通过将不同数量的中空纤维填充到膜壳中来制备中试规模的组件(直径x长度= 1英寸x 20cm)。实验结果表明,较高的堆积密度为500 m(2)/ m(3)会使总通量和选择性均显着降低。对于工业上常用的1m长的组件,使用1m长的中空纤维组件进行了进一步的研究。注意到沿着中空纤维的轴向方向的真空下降,特别是在真空抽吸口附近。尽管如此,即使纤维长度增加到1 m,也可以获得相对较高和稳定的选择性。 (C)2009 Elsevier B.V.保留所有权利。

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