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使用计算流体动力学分析全尺寸螺旋卷式反渗透膜中的浓差极化

Analysis of Concentration Polarisation in Full-Size Spiral Wound Reverse Osmosis Membranes Using Computational Fluid Dynamics.

作者信息

Wei Wenshu, Zou Xiang, Ji Xinxiang, Zhou Rulin, Zhao Kangkang, Wang Yuan

机构信息

Beijing Tianma Electro-Hydraulic Control System Company Ltd., Beijing 100013, China.

UNSW Centre for Transformational Environmental Technologies, Yixing 214200, China.

出版信息

Membranes (Basel). 2021 May 10;11(5):353. doi: 10.3390/membranes11050353.

Abstract

A three-dimensional model for the simulation of concentration polarisation in a full-scale spiral wound reverse osmosis (RO) membrane element was developed. The model considered the coupled effect of complex spacer geometry, pressure drop and membrane filtration. The simulated results showed that, at a salt concentration of 10,000 mg/L and feed pressure of 10.91 bar, permeate flux decreased from 27.6 L/(m h) (LMH) at the module inlet to 24.1 LMH at the module outlet as a result of salt accumulation in the absence of a feed spacer. In contrast, the presence of the spacer increased pressure loss along the membranes, and its presence created vortices and enhanced fluid velocity at the boundary layer and led to a minor decrease in flux to 26.5 LMH at the outlet. This paper underpins the importance of the feed spacer's role in mitigating concentration polarisation in full-scale spiral wound modules. The model can be used by both the industry and by academia for improved understanding and accurate presentation of mass transfer phenomena of full-scale RO modules by different commercial manufacturers that cannot be achieved by experimental characterization of the mass transfer coefficient or by CFD modelling of simplified 2D flow channels.

摘要

开发了一种用于模拟全尺寸螺旋卷式反渗透(RO)膜元件中浓差极化的三维模型。该模型考虑了复杂间隔物几何形状、压降和膜过滤的耦合效应。模拟结果表明,在盐浓度为10000mg/L和进料压力为10.91bar的情况下,由于在没有进料间隔物的情况下盐的积累,渗透通量从模块入口处的27.6L/(m·h)(LMH)降至模块出口处的24.1LMH。相比之下,间隔物的存在增加了沿膜的压力损失,并且其存在产生了涡流并提高了边界层处的流体速度,导致出口处通量略有下降至26.5LMH。本文强调了进料间隔物在减轻全尺寸螺旋卷式模块中浓差极化方面的重要作用。该模型可供行业和学术界使用,以更好地理解和准确呈现不同商业制造商生产的全尺寸RO模块的传质现象,而这是通过传质系数的实验表征或简化二维流动通道的CFD建模无法实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7913/8150347/aa962c8a54e7/membranes-11-00353-g0A1.jpg

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