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Single and dual stage closed-loop pressure retarded osmosis for power generation: Feasibility and performance

机译:用于发电的单级和双级闭环减压渗透:可行性和性能

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摘要

This work proposes an analysis of conventional (single stage) and dual stage Closed-Loop Pressure Retarded Osmosis (CLPRO) for power generation from a salinity gradient resource. Model calculations were performed taking into account the influence of operating parameters such as the draw solution concentration, membrane area, and draw solution pressure on the performance of the CLPRO process. Modeling results showed that the dual stage CLPRO process outperformed the conventional CLPRO process and power generation increased 18% by adding a second stage of PRO membrane. Multi-Effect Distillation (MED) was selected for the regeneration of the draw solution taking advantage of an available source of waste heat energy. The performance of MED process has been assessed by investigating two key parameters: the specific thermal consumption and the specific heat transfer area. The model calculations showed that the power generation by the single and dual stage CLPRO was higher than the electrical power consumption by the MED plant. In the case of the power generation obtained by the dual stage CLPRO, it was 95% higher than the electrical power consumption by the MED plant, proving the possibility of using low-grade heat for producing electricity from a salinity gradient resource. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项工作提出了一种用于从盐度梯度资源发电的常规(单级)和双级闭环压力延迟渗透(CLPRO)分析方法。进行模型计算时要考虑到操作参数(例如汲取溶液浓度,膜面积和汲取溶液压力)对CLPRO工艺性能的影响。建模结果表明,双级CLPRO工艺优于常规CLPRO工艺,通过添加第二级PRO膜,发电量增加了18%。选择多效蒸馏(MED)来利用可用的余热能源来再生汲取溶液。通过研究两个关键参数评估了MED工艺的性能:比热消耗和比热传递面积。模型计算表明,单级和双级CLPRO的发电量高于MED工厂的电力消耗。在双级CLPRO发电的情况下,它比MED工厂的电力消耗高95%,证明了使用低品位热量从盐度梯度资源发电的可能性。 (C)2017 Elsevier Ltd.保留所有权利。

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