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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >An energy-saving 'nanofiltration/electrodialysis with polarity reversal (NF/EDR)' integrated membrane process for seawater desalination. Part III. Optimization of the energy consumption in a demonstration operation
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An energy-saving 'nanofiltration/electrodialysis with polarity reversal (NF/EDR)' integrated membrane process for seawater desalination. Part III. Optimization of the energy consumption in a demonstration operation

机译:节能“具有极性反转(NF / EDR)”的节能“纳滤/电渗析”海水淡化的集成膜工艺。 第三部分。 优化演示操作中的能耗

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For the proposed energy-saving "nanofiltration/electrodialysis with polarity reversal (NF/EDR)" integrated membrane process for seawater desalination, studies on the NF process and the optimization of the ED process have been previously conducted. Based on the obtained results, a multi-stage, multi-passage ED process is presented in this manuscript to realize the optimization of energy consumption. In addition, the integration between NF and EDR processes at a pilot scale was accomplished, in which actual seawater was the feed water and 1200 h of demonstrative operation was implemented. During the NF process, 15 NF90-4040 elements with high desalination capacity were applied. During the EDR process, the membrane stack consisted of three stages with six passages were utilized, in which 250 cell pairs were included with unequal pairs of membranes for each stage. From the first to the third stage, there were 100, 80, and 70 membrane pairs, respectively. In addition, the energy-saving process was achieved by thinning the thickness of the electrode chamber to 2 mm and filling the electrode chambers with mixed ion exchange resin at an appropriate volume ratio. Furthermore, the voltage and the current for each stage can be independently controlled. The results show that the total desalination rate of the integrated process can be 99.26%, the system energy consumption is 2.15 kWh/(m(3) produced water), which is significantly lower than that of SWRO, suggesting that the proposed integrated membrane process is an efficient and economically feasible seawater desalination system.
机译:对于提出的节能“纳滤/电渗析与极性反转(NF / EDR)”海水淡化集成膜过程中,对NF过程和ED过程的优化研究以前进行。基于所获得的结果,多级,多通道ED过程被呈现在该手稿实现能源消耗的优化。另外,在中试规模的NF和EDR进程之间的集成被完成,其中实际海水为进料水和大于示范操作1200 h的实现。在NF过程中,被施加有高脱盐容量15个NF90-4040元件。在EDR过程中,膜堆包括三个阶段具有六个传代利用,其中250细胞对都包含不相等的对每个阶段的膜的。从第一至第三阶段中,有100个,80,和70的膜对,分别。此外,节能处理是由电极室的厚度减薄到2毫米,并在适当的体积比填充混合离子交换树脂的电极室来实现的。此外,对于每个阶段中的电压和电流可以被独立地控制。结果表明,集成过程的总脱盐率可以是99.26%,该系统的能量消耗为& 2.15千瓦时/(M(3)产生的水),其比SWRO的显著降低,这表明所提出的集成膜工艺是一种有效的和经济上可行的海水淡化系统。

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