首页> 外文会议>International Congress on Membranes and Membrane Processes (ICOM 2002) Vol.1 (Desalination Vol.144) Jul 7-12, 2002 Toulouse, France >Effect of feed temperature on permeate flux and mass transfer coefficient in spiral-wound reverse osmosis systems
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Effect of feed temperature on permeate flux and mass transfer coefficient in spiral-wound reverse osmosis systems

机译:进料温度对螺旋缠绕反渗透系统中渗透通量和传质系数的影响

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摘要

The objective of the present study was to analyze and model concentration polarization in spiral-wound seawater membrane elements. In particular, the influence of feed temperature, salinity and flow rate on permeate flow and salinity was evaluated. Membrane lifetime and permeate fluxes are primarily affected by the phenomena of concentration polarization (accumulation of solute) and fouling (i.e., microbial adhesion, gel layer formation and solute adhesion) at the membrane surface. Results show that the polymer membrane is very sensitive to changes in the feed temperature. There was up to a 60% increase in the permeate flux when the feed temperature was increased from 20 to 40℃. This occurred both in the presence and absence of solute. Surprisingly, the permeate flux appears to go through a minimum at an intermediate temperature. There was up to a 100% difference in the permeate flux between feed temperatures of 30 and 40℃. The differences were statistically significant (p<0.05). A doubling of the feed flow rate increased the permeate flux by up to 10%, but only at a high solute concentration. Membrane parameters were estimated using an analytical osmotic pressure model for high salinity applications. A combined Spiegler-Kedem/film theory model described the experimental results. The modeling studies showed that the membrane transport parameters were influenced by the feed salt concentration and temperature.
机译:本研究的目的是分析和建模螺旋缠绕海水膜元件中的浓度极化。特别地,评估了进料温度,盐度和流速对渗透流和盐度的影响。膜寿命和渗透通量主要受膜表面的浓度极化(溶质积累)和结垢(即微生物粘附,凝胶层形成和溶质粘附)现象影响。结果表明,聚合物膜对进料温度的变化非常敏感。当进料温度从20℃升高到40℃时,渗透通量最多增加60%。这在存在和不存在溶质的情况下都发生。令人惊讶的是,在中间温度下,渗透通量似乎经历了最小值。在进料温度为30到40℃之间,渗透通量的差异高达100%。差异具有统计学意义(p <0.05)。进料流量增加一倍,渗透通量最多增加10%,但仅在高溶质浓度下。对于高盐度应用,使用分析性渗透压模型估算膜参数。 Spiegler-Kedem /电影理论的组合模型描述了实验结果。建模研究表明,膜传输参数受进料盐浓度和温度的影响。

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