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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Numerical study of a hybrid multi-stage vacuum membrane distillation and pressure-retarded osmosis system
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Numerical study of a hybrid multi-stage vacuum membrane distillation and pressure-retarded osmosis system

机译:混合多级真空膜蒸馏与压力-延迟渗透系统的数值研究

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In this study, we introduce a hybrid system that integrates a multi-stage vacuum membrane distillation (MVMD) with pressure-retarded osmosis (PRO). The MVMD system employs a recycling flow scheme (MVDM-R) for the continuous production of both distillate water and highly concentrated brine. The concentrated brine that is produced from the MVMD-R system is then used as a draw solution for power generation in the PRO system. We theoretically assessed the distillate and power production of the MVMD-R-PRO system with respect to inlet feed flow rate and recycling flow ratio in the MVMD-R system. When the inlet feed flow rate is constant, the production of distilled water increases slightly, with a decrease in the recycling flow. The maximum possible brine concentration from the MVMD-R system is 1.9 M NaCl at an inlet feed flow rate of 3 kg/min and a 90% recycling flow. A maximum power density of 9.7 W/m(2) is achieved when river water is used as a feed solution in the PRO system at feed and draw solution flow rates of 0.5 kg/min and a constant hydraulic pressure difference. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们介绍了一种混合系统,该系统将多级真空膜蒸馏(MVMD)与压力延迟渗透(PRO)集成在一起。 MVMD系统采用循环流方案(MVDM-R)来连续生产馏出水和高浓度盐水。然后,将从MVMD-R系统产生的浓盐水用作PRO系统中发电的汲取溶液。我们从理论上评估了MVMD-R-PRO系统的馏出物和发电量,相对于MVMD-R系统中的进料流量和循环流量比。当入口进料流速恒定时,蒸馏水的产量略有增加,而循环流量则减少。 MVMD-R系统的最大可能盐水浓度为1.9 M NaCl,入口进料流量为3 kg / min,循环流量为90%。当河水用作PRO系统中的进水和进水速度为0.5 kg / min且液压压差恒定时,最大功率密度为9.7 W / m(2)。 (C)2015 Elsevier B.V.保留所有权利。

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