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Ultrapure water from seawater using integrated reverse osmosis-capacitive deionization system

机译:使用集成的反渗透电容去离子系统从海水中获得超纯水

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摘要

The use of water for particular application depends on its purity level. In accordance with the world health organization, water with total dissolved salts (TDS) less than 500 ppm can be considered good for human consumption. Ultrapure water is used in areas such as semiconductor industry, pharmaceuticals, and laboratories. Purification processes like electrodeionization process, thermal processes, and membrane processes are used to produce ultrapure water from very low salinity (10-200 ppm) water source. In this study, seawater is desalinated to produce ultrapure water using the integrated reverse osmosis (RO)-capacitive deionization (CDI). The RO permeate is fed to the CDI cell to generate the high purity water. It has been found that, with the use of RO-CDI integrated system, seawater can be used to produce ultrapure water with TDS less than 2 ppm and potable water with TDS less than 400 ppm by consuming 3.171 kWh/m(3) of energy. The proposed integrated RO-CDI system is of significant interest in the areas where ultrapure water along with fresh water is required from seawater.
机译:用于特定用途的水的使用取决于其纯度。根据世界卫生组织的规定,总溶解盐(TDS)小于500 ppm的水被认为对人类食用有益。超纯水用于半导体工业,制药和实验室等领域。诸如电去离子过程,热过程和膜过程之类的纯化过程可用于从极低盐度(10-200 ppm)的水源生产超纯水。在这项研究中,使用集成的反渗透(RO)-电容去离子(CDI)技术将海水淡化以生产超纯水。将RO渗透物进料至CDI池以产生高纯度水。已经发现,通过使用RO-CDI集成系统,海水可以通过消耗3.171 kWh / m(3)的能量来生产TDS小于2 ppm的超纯水和TDS小于400 ppm的饮用水。拟议中的RO-CDI集成系统在海水中需要超纯水和淡水的领域中具有重大意义。

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