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Cloth media surface filtration: Characterization of the performance of the needle felt and pile fabrics.

机译:布介质表面过滤:表征针刺毡和起绒织物的性能。

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摘要

The overall objective of this study was to investigate the capability of a cloth media surface filter utilizing two different fabrics (i.e., a needle felt and a pile fabric) to perform as a tertiary filtration device for municipal wastewater treatment. The five specific objectives of this study were: (1) to characterize the physical differences between the needle felt and pile fabrics; (2) to determine the particle removal characteristics of both the pile and needle felt fabrics; (3) to determine performance characteristics of a full scale cloth media disk filter (CMDF) utilizing both the needle felt and pile fabrics; (4) to determine if a full scale CMDF utilizing the needle felt and pile fabrics could meet the Title 22 California Water Recycling Criteria (CWRC) turbidity limit of 2 NTU; and (5) to investigate the effect that the performance characteristics of the CMDF can have on the secondary clarification design. During this study both bench and full scale cloth media surface filters were operated. Based on the results of this study it was determined that the CMDF employing both the needle felt and pile fabric met the Title 22 CWRC turbidity limit of 2 NTU, and performed equivalent to, or better than other Title 22 approved filtration technologies. Because the structure of the needle felt and pile fabrics are very different, large differences between the two fabrics in clean cloth removal, headloss development as mass accumulates, filter ripening, and effectiveness of backwashing were observed. It was determined that the mass accumulation capacity between required backwash intervals is more than double that of the needle felt, resulting in the pile fabric producing less than half the reject water rates of the needle felt fabric. No significant virus removal will be achieved by either the needle felt and pile fabrics when operated without chemicals and with a clean cloth. Prefiltration chlorination damaged the integrity of the floc structure and was shown to lead to severe performance degradation. For the CMDF to perform effectively as a filtration device when utilizing either the needle felt or pile cloths, the floc structure of the wastewater particles must be strong.
机译:这项研究的总体目标是研究使用两种不同织物(即针刺毡和绒头织物)的布料介质表面过滤器作为市政污水处理的第三级过滤设备的能力。这项研究的五个具体目标是:(1)表征针刺毡和起绒织物之间的物理差异; (2)确定绒头和针刺织物的颗粒去除特性; (3)确定同时使用针刺毡和起绒织物的全尺寸布质介质盘式过滤器(CMDF)的性能特征; (4)确定使用针刺毡和起绒织物的全尺寸CMDF是否可以满足标题22加州水循环标准(CWRC)的浊度极限为2 NTU; (5)研究CMDF的性能特征对二级澄清设计的影响。在这项研究中,台式和全尺寸布质介质表面过滤器均已运行。根据这项研究的结果,可以确定使用针刺毡和绒头织物的CMDF均达到了Title 22 CWRC浊度极限为2 NTU,并且表现等同于或优于Title 22批准的其他过滤技术。由于针刺毡和起绒织物的结构差异很大,因此在清洁布的去除,随着质量的积累而产生的头部损失,过滤器的成熟以及反洗的有效性方面,两种织物之间的差异很大。已经确定,在所需的反洗间隔之间的质量累积能力是针刺毡的两倍以上,导致起绒织物产生的针刺织物的拒水率不到一半。在没有化学药品和干净布的情况下,针刺毡和绒头织物都无法实现有效的病毒清除。预过滤氯化会破坏絮凝物结构的完整性,并导致严重的性能下降。为了使CMDF在使用针刺毡或绒头布时有效地用作过滤装置,废水颗粒的絮凝结构必须牢固。

著录项

  • 作者

    Bourgeous, Keith Norman.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Engineering Environmental.; Engineering Sanitary and Municipal.; Engineering Civil.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 p.3859
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;
  • 关键词

  • 入库时间 2022-08-17 11:46:00

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