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Combined ultrafiltration-electrodeionization technique for production of high purity water

机译:结合超滤 - 电流技术,用于生产高纯水

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Electrodeionization (EDI) is the most common method to produce high purity water used for boiler feed water, microelectronic, and pharmaceutical industries. Commonly, EDI is combined with reverse osmosis (RO) to meet the requirement of EDI feed water, with hardness less than 1 ppm. However, RO requires a relatively high operating pressure and ultrafiltration (UF) as pretreatment which results in high energy consumption and high complexity in piping and instrumentation. In this work, UF was used as the sole pretreatment of EDI to produce high purity water. Tap water with conductivity 248 mu S/cm was fed to UF-EDI system. The UF-EDI system showed good performance with ion removal more than 99.4% and produced water with low conductivity from 0.2 to 1 mu S/cm and total organic compounds less than 0.3 ppm. Generally, product conductivity decreased with the increase of current density of EDI and the decrease of feed velocity and UF pressure. The energy consumption for UF-EDI system in this work was 0.89-2.36 kWh/m(3). These results proved that UF-EDI system meets the standards of high purity water for pharmaceutical and boiler feed water with lower investment and energy consumption than RO-EDI system.
机译:电热化(EDI)是生产用于锅炉饲料水,微电子和制药行业的高纯净水的最常见方法。通常,EDI与反渗透(RO)相结合,以满足EDI饲料水的要求,硬度小于1ppm。然而,RO需要相对高的操作压力和超滤(UF)作为预处理,这导致管道和仪器的高能量消耗和高度复杂性。在这项工作中,UF被用作EDI的唯一预处理生产高纯度水。带电导率的自来水248 mu S / cm被送入UF-EDI系统。 UF-EDI系统显示出良好的性能,离子去除超过99.4%,并产生低导电率的水,从0.2至1μS/ cm和小于0.3ppm的总有机化合物。通常,随着EDI的电流密度的增加和进料速度和UF压力的降低,产品电导率降低。本作品中UF-EDI系统的能耗为0.89-2.36千瓦时/米(3)。这些结果证明,UF-EDI系统符合药品和锅炉饲料水的高纯度水标准,其投资和能耗低于RO-EDI系统。

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