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Integration and optimization of pressure retarded osmosis with reverse osmosis for power generation and high efficiency desalination

机译:压渗透与反渗透的集成和优化,用于发电和高效脱盐

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摘要

Salinity gradient power is proposed as a source of renewable energy when two solutions of different salinity are mixed. In particular, Pressure Retarded Osmosis (PRO) coupled with a Reverse Osmosis process (RO) has been previously suggested for power generation, using RO brine as the draw solution. However, integration of PRO with RO may have further value for increasing the extent of water recovery in a desalination process. Consequently, this study was designed to model the impact of various system parameters to better understand how to design and operate practical PRO-RO units. The impact of feed salinity and recovery rate for the RO process on the concentration of draw solution, feed pressure, and membrane area of the PRO process was evaluated. The PRO system was designed to operate at maximum power density of . Model results showed that the PRO power density generated intensified with increasing seawater salinity and RO recovery rate. For an RO process operating at 52% recovery rate and 35 g/L feed salinity, a maximum power density of 24 W/m2 was achieved using 4.5 M NaCl draw solution. When seawater salinity increased to 45 g/L and the RO recovery rate was 46%, the PRO power density increased to 28 W/m2 using 5 M NaCl draw solution. The PRO system was able to increase the recovery rate of the RO by up to 18% depending on seawater salinity and RO recovery rate. This result suggested a potential advantage of coupling PRO process with RO system to increase the recovery rate of the desalination process and reduce brine discharge.
机译:当两种不同盐度的溶液混合时,盐度梯度功率被提议作为可再生能源。尤其是,以前已经提出了将反渗透工艺(RO)与反渗透工艺(RO)结合使用进行发电的技术,使用RO盐水作为汲取溶液。但是,PRO与RO的集成对于提高脱盐过程中水的回收率可能具有进一步的价值。因此,本研究旨在对各种系统参数的影响进行建模,以更好地了解如何设计和操作实际的PRO-RO装置。评估了RO工艺的进料盐度和回收率对PRO工艺的汲取溶液浓度,进料压力和膜面积的影响。 PRO系统设计为在最大功率密度为的情况下运行。模型结果表明,随着海水盐度和反渗透率的提高,产生的PRO功率密度增加。对于以52%的回收率和35 g / L的进料盐度运行的RO工艺,使用4.5 M NaCl汲取溶液可实现24 W / m2的最大功率密度。当海水盐度增加到45 g / L且RO回收率达到46%时,使用5 M NaCl汲取溶液将PRO功率密度增加到28 W / m2。 PRO系统能够根据海水盐度和RO的回收率将RO的回收率提高18%。该结果表明,将PRO工艺与RO系统结合使用具有潜在的优势,可提高脱盐工艺的回收率并减少盐水排放。

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