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Effects of advanced treatments using granular activated carbon adsorption with ozonation and ultrafiltration on chlorine decay

机译:颗粒活性炭的臭氧氧化和超滤吸附深度处理对氯衰减的影响

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摘要

The application of advanced treatment processes has been substantially increased to comply with regulations on microbial inactivation and disinfection by-products. The advanced processes, such as ozonation followed by granular activated carbon or ultrafiltration, yield changes in chemical properties of the treated water in addition to the improvement of water quality. The changes in water chemistry could affect the kinetics of disinfectant decay within the water distribution system. In addition, decay behaviors using various pipe materials were investigated with water that underwent advanced treatments. The permeate from ultrafiltration generally shows lower decay rate constants than that of effluents from ozonation + granular activated carbon adsorption. The differences were especially obvious for so-called unreactive pipe coupons such as polyvinyl chloride (PVC), polyethylene (PE), polycarbonate (PC), and stainless steel. Reactive pipe materials, such as cast iron and copper, had almost 10 times higher rate constants than the unreactive pipes, regardless of the applied treatment processes. Appropriate safety actions should be introduced to ensure high quality of drinking water in a distribution system prior to changing processes in water treatment plants.
机译:先进处理工艺的应用已大大增加,以符合有关微生物灭活和消毒副产物的规定。诸如臭氧化之后再进行颗粒状活性炭或超滤等先进工艺,不仅改善了水质,而且还改变了处理后水的化学性质。水化学的变化可能会影响配水系统内消毒剂衰减的动力学。此外,还使用了经过深度处理的水研究了使用各种管道材料的衰减行为。与通过臭氧化+颗粒状活性炭吸附的流出物相比,超滤产生的渗透物通常显示出较低的衰减速率常数。对于所谓的非反应性管道试样,例如聚氯乙烯(PVC),聚乙烯(PE),聚碳酸酯(PC)和不锈钢,这种差异尤其明显。无论采用何种处理方法,反应管材料(例如铸铁和铜)的速率常数几乎都比未反应管高10倍。应采取适当的安全措施,以确保在改变水处理厂的流程之前,分配系统中的饮用水质量高。

著录项

  • 来源
    《Desalination and water treatment》 |2014年第6期|976-984|共9页
  • 作者单位

    Department of Environmental Engineering, Konkuk University, #1 Hwayang-dong, Gwangjin-gu, Seoul, South Korea;

    Department of Environmental Engineering, Konkuk University, #1 Hwayang-dong, Gwangjin-gu, Seoul, South Korea;

    Department of Civil and Environmental Engineering, Dankook University, Jukjeon-dong, Suji-gu, Yongin-si, Gyeonggi-do 448-701, South Korea;

    School of Urban and Environmental Engineering, Ulsan National Institute of Science and Technology, UNIST-gil 50, Ulsan 689-798, South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chlorine decay; Distribution system; GAC and ozone process; Ultrafiltration; Wall materials;

    机译:氯衰减;分发系统;GAC和臭氧工艺;超滤;墙面材料;

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