首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Demineralization of geothermal water reverse osmosis (RO) permeate by electrodeionization (EDI) with layered bed configuration
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Demineralization of geothermal water reverse osmosis (RO) permeate by electrodeionization (EDI) with layered bed configuration

机译:分层床构造通过电去离子(EDI)对地热水反渗透(RO)进行脱盐

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摘要

In this study, demineralization of reverse osmosis (RO) permeate of geothermal water by electrodeionization (EDI) method was investigated. The layered bed configuration of EDI system consists of Purolite A 500 anion exchange and Purolite CT 175 cation exchange resins in the central compartment. Selemion AME anion exchange and Selemion CME cation exchange membranes were used to separate the central compartment from the electrode compartments. The effects of applied voltage, feed flow rate and the concentration of Na2SO4 solution in the electrode compartments on product water quality were investigated. According to the results obtained, the average conductivity of RO permeate decreased from 15.0 uS/cm to 2.9 μS/cm in the product water when the applied voltage was increased. It was possible to obtain a product water with an average conductivity of 1.0 uS/cm by the increase in the feed flow rate.
机译:在这项研究中,研究了通过电去离子(EDI)方法对地热水中反渗透(RO)渗透液进行脱盐的方法。 EDI系统的分层床配置由中央隔室中的Purolite A 500阴离子交换树脂和Purolite CT 175阳离子交换树脂组成。使用Selemion AME阴离子交换膜和Selemion CME阳离子交换膜将中央室和电极室分隔开。研究了施加电压,进料流速和电极室中Na2SO4溶液浓度对产品水质的影响。根据获得的结果,当施加电压增加时,产品水中RO渗透物的平均电导率从15.0 uS / cm降低到2.9μS/ cm。通过进料流速的增加,可以得到平均电导率为1.0 uS / cm的产品水。

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