首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Membrane capacitive deionization-reverse electrodialysis hybrid system for improving energy efficiency of reverse osmosis seawater desalination
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Membrane capacitive deionization-reverse electrodialysis hybrid system for improving energy efficiency of reverse osmosis seawater desalination

机译:用于提高反渗透海水淡化的能效的膜电容去离子反向电渗变系统

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摘要

The extraordinarily high salinity of seawater (e.g., Gulf seawater) requires a seawater desalination system such as two-pass reverse osmosis (RO). However, the auxiliary brackish water reverse osmosis (BWRO) treatment for satisfying the produced water quality significantly increases the energy consumption. This study first proposes a novel concept, integrating membrane capacitive deionization (MCDI) and reverse electrodialysis (RED) with RO to treat high-salinity seawater with enhanced energy efficiency. In this hybrid system, MCDI successfully substituted for BWRO and met the required water quality regulations by the World Health Organization (WHO). Moreover, RED recovered 33% of the energy from discharges. The optimum operating conditions of the RO-MCDI hybrid system were found to be 0.8 V of applied voltage on MCDI at 50% and 80% of water recovery for the first pass RO and the second pass MCDI, respectively. In particular, the great flexibility of MCDI in removal efficiency could generate notable synergistic effects with RED, which could lead to better energy efficiency. Consequently, under optimized operation conditions, the energy consumption of this novel RO-MCDI-RED hybrid system was respectively reduced by 39.0% and even 16.8% compared to that of a typical two-pass RO system without and with RED.
机译:海水(例如海水海水)非常高的盐度需要海水淡化系统,如双通反渗透(RO)。然而,用于满足生产的水质的辅助薄荷水反渗透(BWRO)处理显着提高了能量消耗。本研究首先提出了一种新颖的概念,将膜电容器去离子(MCDI)和反向电渗析(红色)与RO相结合,以提高能量效率的高盐度海水。在这种混合系统中,MCDI成功地代替了BWRO,并由世界卫生组织(世卫组织)符合所需的水质法规。此外,红色从排出中恢复了33%的能量。发现RO-MCDI混合系统的最佳运行条件是MCDI的0.8V,分别为MCDI的施加电压为50%和80%的水恢复,分别用于第一遍RO和第二遍MCDI。特别是,MCDI在去除效率方面的巨大灵活性可能产生具有红色的显着协同效果,这可能导致更好的能效。因此,在优化的运行条件下,与典型的双通RO系统的典型双通RO系统相比,这种新型RO-MCDI-RED杂交系统的能量消耗分别降低了39.0%,甚至16.8%。

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