首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Feasibility study of reverse osmosis-flow capacitive deionization (RO-FCDI) for energy-efficient desalination using seawater as the flow-electrode aqueous electrolyte
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Feasibility study of reverse osmosis-flow capacitive deionization (RO-FCDI) for energy-efficient desalination using seawater as the flow-electrode aqueous electrolyte

机译:使用海水作为流动电极水电解质的能量效率脱盐的反渗透流动电容去离子(RO-FCDI)的可行性研究

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Seawater reverse osmosis (SWRO) is usually combined with brackish reverse osmosis (BWRO) to improve the water quality in seawater desalination; however, this configuration often results in high energy consumption. Consequently, membrane capacitive deionization (MCDI) has been suggested as a lower energy alternative technology, but cyclic operation within the cell (i.e., discontinuous operation of ad/desorption) is a main disadvantage. On the other hand, flow electrode capacitive deionization (FCDI) can be continuously operated by using a flow electrode. In this study, the feasibility of a SWRO-FCDI system was examined by using a suitable electrolyte in the flow electrode: seawater or SWRO concentrate. In addition, by employing a selective ion exchange membrane (IEM), the FCDI was able to selectively remove monovalent ions rather than divalent ions, unlike BWRO, thus producing a final product water containing divalent ions, which is more suitable for corrosion control in the subsequent pipe distribution systems. As a result, the remineralization process can be minimized. To test the SWRO-FCDI concept, actual SWRO permeate was first treated in a single mode with an electrolyte comprising real seawater in a flow electrode, and the feasibility of long-term operation was proven by batch-mode, which allowed the optimization of the FCDI active area.
机译:海水反渗透(SWRO)通常与咸水反渗透(BWRO)相结合,以提高海水淡化的水质;然而,这种配置通常会导致高能耗。因此,已经提出了膜电容去离子(MCDI)作为较低的能量替代技术,但细胞内的循环操作(即,广告/解吸的不连续操作)是主要的缺点。另一方面,通过使用流动电极可以连续地操作流电极电容去离子(FCDI)。在该研究中,通过在流动电极中使用合适的电解质来检查WRO-FCDI系统的可行性:海水或Swro浓缩物。另外,通过使用选择性离子交换膜(IEM),与BWRO不同,FCDI能够选择性地除去一价离子而不是二价离子,从而产生含有二价离子的最终产物水,这更适合于腐蚀控制后续管道分配系统。结果,可以最小化再矿化过程。为了测试WCDI概念,首先用一个模式处理实际的SWRO渗透物,其中电解质包括在流电极中的真正海水,通过批量模式证明了长期操作的可行性,这允许优化优化FCDI有效区域。

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