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Study on strategies to reduce membrane scaling and fouling in drinking water and water reuse membrane systems.

机译:研究减少饮用水和水回用膜系统中膜结垢和结垢的策略。

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摘要

Central Arizona Project (CAP) water was treated using the process of slow sand filtration, chemical pretreatment and RO membrane. Both bench scale plate and frame reactor and pilot scale tests suggested RO membrane fouling by clay and organic matter with minor scaling by CaCO3 and BaSO4. Several strategies were studied to reduce RO membrane fouling and scaling. The first is choosing optimized operation conditions through bench scale tests. The second is to modify the traditional concentration polarization model for a better fouling/scaling prediction. This modified model was also used to optimize concentrate spacer design, which leads to reduced concentration polarization index. The third is to develop a method for anti-scalant test and comparison, which can be used for anti-scalant selection and dose optimization.;Additional to these strategies, pre-oxidation pretreatment for RO membrane in water reuse application was investigated at bench and pilot scale. In the MBR-Ozone-RO train study, ozone showed certain impact on RO membrane fouling, but no significant difference was made on membrane cleaning frequency. UV and UV/AOP impacts on RO membrane fouling tests were done on plate and frame reactor. UV did not show any competency to reduce membrane fouling, while UV/AOP tests showed promising results by reducing RO membrane fouling rate by 50%.
机译:使用缓慢的砂滤,化学预处理和反渗透膜处理了亚利桑那中央项目(CAP)的水。台式规模的板框式反应器和中试规模的试验均表明,粘土和有机物对RO膜结垢,而CaCO3和BaSO4的结垢程度较小。研究了几种减少反渗透膜结垢的方法。首先是通过工作台规模测试选择最佳的运行条件。第二是修改传统的浓度极化模型,以获得更好的结垢/结垢预测。该修改后的模型还用于优化浓缩物间隔物设计,从而降低了浓度极化指数。第三是开发一种防垢剂测试和比较的方法,可用于防垢剂的选择和剂量的优化。除这些策略外,还在工作台和实验室研究了RO膜在水回用中的预氧化预处理。中试规模。在MBR-Ozone-RO列车研究中,臭氧显示出对RO膜结垢的一定影响,但对膜清洗频率没有显着差异。在板框式反应器上进行了UV和UV / AOP对RO膜结垢测试的影响。紫外线没有显示出减少膜污染的能力,而紫外线/ AOP测试则显示出将反渗透膜污染降低50%的结果。

著录项

  • 作者

    Yan, Dongxu.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 269 p.
  • 总页数 269
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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