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Temperature Effects and Entropy Generation of Pressure Retarded Osmosis Process

机译:压力延迟渗透过程的温度效应和熵产生

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摘要

Pressure retarded osmosis (PRO) is considered as one of the promising and new techniques to generate power. In this work, a numerical model was used to study the effect of the flow streams temperature on the performance of the PRO process and entropy generation. The variation of the feed solution and draw solution temperatures, pressure difference, concentration difference, and flow rates on the power density and entropy generation were discussed. The model results were validated with experimental measurements obtained from literature and showed a good agreement with the model predictions. It was found that the power density increases by about 130% when both feed solution and draw solution temperatures increase from 20 °C to 50 °C. The feed solution temperature has more impact on the power density than that of the draw solution. This is due to the direct effect of the feed solution temperature on the water permeability and diffusion coefficient. The effect of the feed solution temperature becomes significant at higher concentration differences. Whereas, at low concentrations, the power density slightly increases with the feed temperature. Furthermore, it is found that there is an optimum volumetric flow in the channels that maximizes the power density and minimizes the entropy generation when fixing other operating conditions.
机译:压延渗透渗透(Pro)被认为是产生电力的有希望和新技术之一。在这项工作中,使用数值模型来研究流量流温度对Pro过程和熵生成性能的影响。讨论了饲料溶液的变化,施加溶液温度,压力差,浓度差和流量密度和熵生成的流速。模型结果用文学获得的实验测量验证,并与模型预测显示了良好的一致性。发现功率密度在进料溶液和施加溶液温度从20℃增加至50℃时增加约130%。进料溶液温度对功率密度的影响比抽取溶液更多。这是由于进料溶液温度对水渗透性和扩散系数的直接影响。饲料溶液温度的效果在较高的浓度差异下变得显着。然而,在低浓度下,功率密度随着进料温度略有增加。此外,发现存在最佳的容积流量,其最大化功率密度,并在固定其他操作条件时最小化熵产生。

著录项

  • 期刊名称 Entropy
  • 作者单位
  • 年(卷),期 2019(21),12
  • 年度 2019
  • 页码 1158
  • 总页数 14
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:压延渗透;温度效应;功率密度;熵生成;最佳流动;

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