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4040 螺旋卷式正渗透膜组件的实验研究。

Experimental study of a 4040 spiral-wound forward-osmosis membrane module.

机构信息

Department of Thermal Systems, Korea Institute of Machinery and Materials, 156 Gajungbukno, Yuseong-Gu, Daejeon 305-343, Republic of Korea.

出版信息

Environ Sci Technol. 2011 Sep 15;45(18):7737-45. doi: 10.1021/es202175m. Epub 2011 Aug 29.

Abstract

This paper analyzes the structural features of a spiral-wound forward-osmosis (SW FO) membrane module via an experimental approach and presents the relationships between the water flux and operating conditions for design and operation of a large-scale FO process. The SW FO module has four ports: an inlet/outlet for the draw solution and an inlet/outlet for the feed solution. Accordingly, two strongly interacting flow streams existed on either side of the membrane with spatially variable properties. Unlike the operation of a membrane cell device loaded with a small membrane coupon, it was appropriate to operate a housing-type FO unit loaded with a 4040 SW FO module with a lower draw flow rate than feed flow rate. Because of the structural features of the SW FO module, the draw solution flowed inside of the membrane envelope under a considerable pressure in order to overcome the flow resistance. The effect of operating conditions on the water flux in a 4040 SW FO module was investigated. A water flux equation based on a temperature-correction factor (TCF) was proposed to predict the water flux at a given temperature. Our study is a good reference point for designing the FO process and FO membrane module.

摘要

本文通过实验方法分析了螺旋卷式正向渗透(SW FO)膜组件的结构特点,并给出了水通量与运行条件之间的关系,为大型 FO 过程的设计和运行提供了依据。SW FO 膜组件有四个端口:一个用于汲取液的进出口和一个用于料液的进出口。因此,在膜的两侧存在两种相互作用强烈且具有空间变化特性的流动流。与加载小膜片的膜池装置的运行不同,使用加载有 4040 SW FO 模块的壳式 FO 装置以低于料液流速的汲取液流速运行是合适的。由于 SW FO 模块的结构特点,汲取液在膜包内流动,需要承受相当大的压力,以克服流动阻力。考察了操作条件对 4040 SW FO 模块水通量的影响。提出了基于温度校正因子(TCF)的水通量方程,以预测给定温度下的水通量。我们的研究为 FO 过程和 FO 膜组件的设计提供了很好的参考。

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