小型供水设施曝气闭路反渗透改造研究

Seong-Su Kim, Inseok Seo, Kwanho Jeong
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引用次数: 0

摘要

目标:引进了一种结合曝气和反渗透(RO)工艺的水处理系统,以改善一个小村庄的供水设施,该村庄由于天然放射性物质、硝酸盐氮和氟化物浓度高,需要进行额外的水处理。在这项研究中,CCRO(闭路反渗透)首次在韩国被引入商业用途。利用该系统,我们评估了其水处理效率和混合曝气水和反渗透水的效果,以改善农村地区的自来水厂。方法:通过对原水和单元工艺的水质分析,评价主要污染物和其他离子物质的去除率。此外,通过评估操作特性的变化,通过曝气和CCRO工艺处理的水的混合比例,验证和优化了小型供水设施的运行效率。结果与讨论:曝气工艺在2小时内可去除原水中高达86%的氡,反渗透工艺可去除98.9%的铀、85.5%的硝态氮和82.8%的氟。在其他离子物质的情况下,反渗透工艺平均去除率超过80%。当反渗透剂的掺混比达到75%时,最终处理水的水质较好。然而,由于需要高通量和压力(分别为1.8 m3/hr和7.6 bar), CCRO操作导致相对较高的比功率消耗,为0.27 kWh/m3。结论:在本研究中,我们发现曝气和CCRO相结合的水处理系统有效地去除了主要污染物(天然放射性物质、硝酸盐氮和氟化物)。特别是,在国内首次确认了CCRO工艺的稳定运行和水处理效率符合商业用途。将曝气处理后的水与CCRO混合,可以生产出高质量的自来水,即使原水含有高浓度污染物,也能达到饮用水质量标准。
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Study on Retrofitting of Small-scale Water Supply Facility using aeration and Closed-circuit Reverse Osmosis
Objectives : A water treatment system, combining aeration and reverse osmosis (RO) processes, was introduced to improve water supply facilities in a small village where additional water treatment was required due to high concentrations of natural radioactive substances, nitrate nitrogen, and fluoride. In this study, CCRO(Closed-circuit reverse osmosis) was first introduced for commercial use in Korea. With this system, we evaluated its water treatment efficiency and effectiveness of blending the aerated water and RO permeate for improved waterworks in rural areas.Methods : The removal rate of major pollutants and other ionic substances was evaluated by analyzing the water quality of raw water and unit processes. In addition, the operational efficiency of a small-scale water supply facility was verified and optimized by evaluating a change in operational characteristics depending on the blending ratio of the treated waters by aeration and CCRO processes.Results and Discussion : Up to 86% of the radon contained in raw water was removed by the aeration process within 2 hours, and 98.9% of uranium, 85.5% of nitrate nitrogen, and 82.8% of fluoride were removed by the RO process. In the case of other ionic substances, more than 80% was removed on average by the RO process. The higher blending ratio of RO permeate up to 75% resulted in the better quality of the final treated water. However, since requiring the high flux and pressure (at 1.8 m3/hr and 7.6 bar, respectively), CCRO operation resulted in a relatively high specific power consumption at 0.27 kWh/m3.Conclusion : In this study, we found that the major contaminants (natural radioactive substances, nitrate nitrogen, and fluoride) were effectively removed by the water treatment system wherein the aeration and CCRO processes were combined. In particular, it was confirmed for the first time in Korea that the stable operation and water treatment efficiency of the CCRO process was satisfactory for commercial purposes. It could produce high-quality tap water through the blending of waters treated by aeration and CCRO, expecting that meeting drinking-water quality standards would be attainable even when raw water contains high-concentration pollutants.
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审稿时长
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