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Dual stage PRO process: impact of the membrane materials of the process performance

机译:双阶段PRO工艺:膜材料对工艺性能的影响

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A dual stage pressure retarded osmosis (PRO) process was investigated for power generation using different types of membranes. Polyamide (PA) and cellulose triacetate (CTA) membranes were used in the first and second stage of the PRO process to improve the process performance due to the high water permeability of PA membranes. A comparison between dual stage PA-CTA and CTA-CTA membrane systems were carried out using seawater as a draw solution, while fresh water and wastewater effluent were the feed solution in the first and second stage of the process. The impact of draw solution flow rate on the process performance was evaluated. The performance of first and second stage of the PRO process increased by 11.5 and 28.6%, respectively, when the draw solution flow rate increased by a factor of 2.5. In return, there was a negligible increase in the total specific power consumption of the PRO process. In general, power consumption of the dual stage PRO process was as low as 0.3kWh/m(3). Furthermore, the results showed that the performance of the dual stage PRO process increased with increasing seawater salinity from 32 to 50g/L due to the higher net driving pressure across the membrane. Finally, power generation in the PA-CTA system was up to 33% higher than that in the CTA-CTA system.
机译:研究了使用不同类型的膜进行发电的双级减压渗透(PRO)工艺。聚酰胺(PA)和三乙酸纤维素(CTA)膜用于PRO工艺的第一和第二阶段,以提高工艺性能,因为PA膜具有高透水性。使用海水作为汲取溶液进行了PA-CTA和CTA-CTA双阶段膜系统之间的比较,而第一阶段和第二阶段的进水是淡水和废水。评估了汲取溶液流速对工艺性能的影响。当汲取溶液的流速增加2.5倍时,PRO过程的第一阶段和第二阶段的性能分别提高了11.5和28.6%。作为回报,PRO过程的总单位能耗却微不足道。通常,双阶段PRO工艺的功耗低至0.3kWh / m(3)。此外,结果表明,由于更高的跨膜净驱动压力,随着海水盐度从32g / L增加到50g / L,双级PRO工艺的性能得以提高。最后,PA-CTA系统的发电量比CTA-CTA系统的发电量高33%。

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