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Concentration and Temperature Effects on Water and Salt Permeabilities in Osmosis and Implications in Pressure-Retarded Osmosis

机译:浓度和温度对渗透中水和盐渗透性的影响及其对压力延迟渗透的影响

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摘要

Osmotic power extracted from the mixing of freshwater with seawater is a renewable energy resource that has gained increasing attention during recent years. The estimated energy can significantly contribute to the production of power worldwide. However, this power production will be subject to variation due to both local conditions and seasonal variation. The present paper explores the effect of concentration and temperature on water and salt fluxes in osmosis at zero transmembrane pressure for five different membranes. Further, the measured fluxes have been utilized to model water and salt permeabilities (A and B), and the structure parameter (S). The observed flux variations at different combinations of concentration and temperature have been ascribed to skin properties, i.e., changes in A and B of each membrane, whereas S was assumed constant within the range of concentrations and temperatures that were tested. Simplified equations for the variation in A and B with temperature and concentration have been developed, which enable A and B to be calculated at any concentration and temperature based on permeabilities determined from osmotic experiments at standard test conditions. The equations can be used to predict fluxes and specific power production with respect to geographical and seasonal variations in concentration and temperature for river water/seawater pressure-retarded osmosis. The obtained results are also useful for forward osmosis processes using seawater as draw solution.
机译:从淡水和海水混合中提取的渗透力是一种可再生能源,近年来受到越来越多的关注。估计的能量可以极大地促进全世界的电力生产。但是,由于当地条件和季节变化,该发电量可能会有所变化。本文探讨了在五个跨膜压力为零的跨膜压力下,浓度和温度对渗透过程中水和盐通量的影响。此外,已将测得的通量用于对水和盐的渗透性(A和B)以及结构参数(S)进行建模。观察到的在不同浓度和温度组合下的通量变化归因于皮肤特性,即每个膜的A和B的变化,而假定S在所测试的浓度和温度范围内是恒定的。已经开发出用于简化A和B随温度和浓度变化的方程,可以根据在标准测试条件下渗透实验确定的渗透率,在任何浓度和温度下计算A和B。这些方程可用于预测河流和海水压力滞后渗透的浓度和温度的地理和季节变化的通量和特定发电量。获得的结果对于使用海水作为汲取溶液的正向渗透过程也很有用。

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