首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Energy-saving 'NF/EDR' integrated membrane process for seawater desalination. Part II. The optimization of ED process
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Energy-saving 'NF/EDR' integrated membrane process for seawater desalination. Part II. The optimization of ED process

机译:节能“NF / EDR”海水淡化的集成膜工艺。 第二部分。 ED过程的优化

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For the high pressure and high energy consumption of Seawater reverse osmosis (SWRO) desalination technology, an energy-saving "NF/EDR" integrated membrane process for seawater desalination was proposed in our study. The seawater desalination by Nanofiltration (NF) membrane with high desalination capacity has been reported in our previous paper. This manuscript is the second part of this system about the optimization of electrodialysis (ED) process, where ED process with polarity reverse (EDR) was applied to treat the NF output with the conductivity of 8790 mu S/cm. A series of operation parameters of the ED process were optimized. More specifically, the effects of the concentrate and dilute flow, internal water flow model, as well as temperature of raw water on separation performances were well investigated. Besides, the optimal period of polarity reverse was determined. The results showed that with the dilute stream flow of 150 L/h, concentrate stream flow of 120 L/h and the ED stack consisted of one stage with two passages, with the proportion of 27/23 in cell pairs, together with suitable raw water temperature, the desalination rate of ED process could be about 90% and the energy consumption was 0.98 KWh/(m(3) produced water). Furthermore, the membrane fouling could be effectively avoided by EDR with a period of reversing electrodes at 3 h. All the results demonstrated that the optimization of ED process is beneficial to the increasing of desalination rate as well as the decreasing of energy consumption in the "NF/EDR" integrated system, besides, it provided research basis and data support for the pilot-scale system of the "NF/EDR" integrated membrane process.
机译:对于海水反渗透(SWRO)脱盐技术的高压和高能耗,在我们的研究中提出了一种节能的“NF / EDR”综合膜方法,在我们的研究中提出了海水淡化。在我们之前的论文中报道了通过纳米滤膜(NF)膜的海水淡化,在我们之前的论文中据报道。该稿件是该系统的第二部分关于优化电渗析(ED)过程,其中应用具有极性反向(EDR)的ED处理以8790 mu S / cm的电导率处理NF输出。优化了ED过程的一系列操作参数。更具体地,浓缩浓缩物和稀释流动,内部水流模型以及原水对分离性能的影响的影响得到了很好的研究。此外,确定极性逆转的最佳期限。结果表明,通过150L / h的稀释流流程,120L / h的浓缩流流程和ED堆叠由具有两个通道的一个阶段组成,其中细胞对中的27/23比例为27/23,以及合适的原料水温,ED工艺的脱盐速率约为90%,能耗为0.98千瓦时/(m(3)制作水)。此外,EDR可以有效地避免膜结垢,其在3小时时具有逆转电极的时段。所有结果都表明,ED过程的优化有利于增加海水淡化率以及“NF / EDR”集成系统中的能耗降低,除此之外,它为试点规模提供了研究基础和数据支持“NF / EDR”的系统集成膜过程。

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