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Stable copper-zeolite filter media for bacteria removal in stormwater

机译:稳定的铜沸石滤料,可去除雨水中的细菌

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摘要

Cu~(2+)-exchanged zeolite (ZCu) as antibacterial media shows great potential for bacteria removal from stormwater, but its stability in high salinity water needs attention. In this study, stable antibacterial media were developed by modifying ZCu through calcination and in situ Cu(OH)_2 coating. Their stability and Escherichia coli removal efficiency along with impact of salinity were examined in gravity-fed columns. While copper leaching from ZCu was 20 mg/L in test water of salinity 250 μS/cm, it was reduced by over 97% through Cu(OH)_2 coating and/or calcination. ZCu coated with Cu(OH)_2 followed by heat treatment at 180℃ (ZCuCuO180) exhibited more consistent E. coli removal (1.7-2.7 log) than ZCu (1.2-3.3 log) in test water of varied salinity but constant contact time 22 min. ZCu calcined at 400 ℃ (ZCu400) effectively inactivated removed bacteria during 24 h drying period. In the presence of native microbial communities, new sand filters, particularly those having ZCu400 at the top to inactivate bacteria during drying periods and ZCuCuO180 midway to capture and inactivate microbes during wet events, provided the best bacterial removal (1.7 log, contact time 9 min). Copper leaching from this design was 9 μg/L, well below long-term irrigation standard of 200μg/L.
机译:Cu〜(2+)交换沸石(ZCu)作为抗菌介质具有去除雨水中细菌的巨大潜力,但在高盐度水中的稳定性值得关注。在这项研究中,通过煅烧和原位Cu(OH)_2涂层改性ZCu,开发了稳定的抗菌介质。在重力进料柱中检查了它们的稳定性,大肠杆菌去除效率以及盐度的影响。在盐度为250μS/ cm的测试水中,从ZCu浸出的铜为20 mg / L,但通过Cu(OH)_2涂层和/或煅烧可将其减少97%以上。在盐度不同但接触时间恒定的测试水中,用Cu(OH)_2涂覆的ZCu随后在180℃热处理(ZCuCuO180)表现出比ZCu(1.2-3.3 log)更一致的大肠杆菌去除率(1.7-2.7 log)。分钟在400℃下煅烧的ZCu(ZCu400)在24 h的干燥过程中有效地灭活了去除的细菌。在存在天然微生物群落的情况下,新的砂滤池,特别是顶部具有ZCu400的砂滤池,可在干燥期间使细菌灭活,而在潮湿事件中途具有ZCuCuO180的微生物捕集和灭活,则提供了最佳的细菌去除效果(1.7 log,接触时间9分钟)。该设计中的铜浸出量为9μg/ L,远低于200μg/ L的长期灌溉标准。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2014年第30期|222-230|共9页
  • 作者单位

    Environmental and Public Health Microbiology Lab (EPHM LAB), Monash Water for Liveability, Department of Civil Engineering, Monash University, Melbourne, Vic 3800, Australia,CRC for Water Sensitive Cities, Melbourne, Vic 3800, Australia;

    Environmental and Public Health Microbiology Lab (EPHM LAB), Monash Water for Liveability, Department of Civil Engineering, Monash University, Melbourne, Vic 3800, Australia,CRC for Water Sensitive Cities, Melbourne, Vic 3800, Australia;

    Environmental and Public Health Microbiology Lab (EPHM LAB), Monash Water for Liveability, Department of Civil Engineering, Monash University, Melbourne, Vic 3800, Australia,CRC for Water Sensitive Cities, Melbourne, Vic 3800, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stormwater biofilter; Pathogen treatment; Antimicrobial filter media; Copper E. coli;

    机译:雨水生物滤池;病原体治疗;抗菌过滤介质;铜大肠杆菌;

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