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Hybrid Pressure Retarded Osmosis−Membrane Distillation (PRO−MD) Process for Osmotic Power and Clean Water Generation

机译:用于渗透力发电和清洁水生产的混合压力延迟渗透膜蒸馏(PRO-MD)工艺

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摘要

A novel pressure retarded osmosis−membrane distillation (PRO−MD) hybrid process has been experimentally conceived for sustainable production of renewable osmotic power and clean water from various waters. The proposed PRO−MD system may possess unique advantages of high water recovery rate, huge osmotic power generation, well controlled membrane fouling, and minimal environmental impacts. Experimental results show that the PRO−MD hybrid process is promising that not only can harvest osmotic energy from freshwater but also from wastewater. When employing a 2 M NaCl MD concentrate as the draw solution, ultrahigh power densities of 31.0 W/m2 and 9.3 W/m2 have been demonstrated by the PRO subsystem using deionized water and real wastewater brine as the feeds, respectively. Simultaneously, high purity potable water with a flux of 32.5−63.1 L/(m2.h) can be produced by the MD subsystem at 40−60 °C without any detrimental effects of fouling. The energy consumption in the MD subsystem might be further reduced by applying a heat exchanger in the hybrid system and using low-grade heat or solar energy to heat up the feed solution. The newly developed PRO−MD hybrid process would provide insightful guidelines for the exploration of alternative green technologies for renewable osmotic energy and clean water production.
机译:通过实验构想了一种新型的压力渗透-膜蒸馏(PRO-MD)混合工艺,用于可持续生产各种水的可再生渗透力和清洁水。提出的PRO-MD系统可能具有独特的优势,即高水回收率,巨大的渗透力发电,良好的膜污染控制以及对环境的影响最小。实验结果表明,PRO-MD混合工艺不仅可以从淡水中获取渗透能,而且还可以从废水中获取渗透能。当使用2 M NaCl MD浓缩液作为汲取溶液时,PRO子系统已证明分别使用去离子水和实际废水盐水作为进料,超高功率密度分别为31.0 W / m2和9.3 W / m2。同时,MD子系统可以在40-60°C的温度下产生流量为32.5−63.1 L /(m2.h)的高纯度饮用水,而不会产生积垢的有害影响。通过在混合动力系统中应用热交换器并使用低级热量或太阳能加热进料溶液,可以进一步降低MD子系统中的能耗。新开发的PRO-MD混合工艺将为探索替代绿色技术以提供可再生渗透能和清洁水提供有见地的指导。

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