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首页> 外文期刊>Water science & technology >Influence of bacterial biofilms on Bacillus globigii spore viability in model chlorinated water distribution systems
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Influence of bacterial biofilms on Bacillus globigii spore viability in model chlorinated water distribution systems

机译:细菌生物膜对模型氯化水分配系统中球形芽孢杆菌孢子活力的影响

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摘要

Viability of Bacillus globigii spores in chlorinated polyvinyl chloride (PVC) pipe loop systems were examined under oligotrophic conditions. Three 2.5 cm ×10 m pipe loops having poised free chlorine concentrations of 0.0, 0.5, and 1.0mg/L were seeded with 3.0 ×10~8 B. globigii spores each and viability was assessed over a 21 day period in both the recirculating waters and within the biofilms associated with pipe wall surfaces. After 10min of exposure, viable spores were found to be associated within the pipe biofilms. In the untreated pipe loop spore counts remained statistically consistent in both the bulk water and biofilm until 1.0mg/L free chlorine was introduced, then spores were completely inactivated in less than seven days, spores within the pipe loop poised at 0.5mg/L free chlorine showed a 7.6-log~(10) inactivation in the bulk water phase, but only a 2.7-log~(10) inactivation was observed within the biofilm after 14 days of treatment. Complete inactivation was observed in the 1.0mg/L free chlorine system in both the biofilm and the bulk water phase in less than 10min. These data demonstrated that B. globigii spores were readily incorporated into PVC pipe biofilms, which decreased spore inactivation nearly five orders of magnitude under moderate free chlorine concentrations.
机译:在贫营养条件下检查了球形芽孢杆菌孢子在氯化聚氯乙烯(PVC)管回路系统中的活力。用3.0×10〜8 B. globigii孢子分别播种3个2.5 cm×10 m的管道,这些管道的自由氯浓度分别为0.0、0.5和1.0mg / L,并在21天的时间内评估两种循环水中的生存能力以及与管壁表面相关的生物膜内。暴露10分钟后,发现活菌孢子在管道生物膜内缔合。在未经处理的管回路中,散装水和生物膜中的孢子计数在统计上保持一致,直到引入1.0mg / L的游离氯,然后在不到7天的时间内孢子被完全灭活,管回路中的孢子保持在0.5mg / L的游离状态。氯在本体水相中显示出7.6log〜(10)失活,但处理14天后在生物膜中仅观察到2.7log〜(10)的失活。在不到10分钟的时间内,在生物膜和整个水相中的1.0mg / L游离氯系统中都观察到了完全失活。这些数据表明,球形双歧杆菌的孢子很容易掺入PVC管生物膜中,在中等的自由氯浓度下,孢子的失活率降低了近五个数量级。

著录项

  • 来源
    《Water science & technology》 |2010年第3期|P.277-285|共9页
  • 作者单位

    US Army Engineer Research & Development Center, Construction Engineering Research Laboratory,2902 Newmark,Champaign, IL 61822,USA;

    rnUS Army Engineer Research & Development Center, Construction Engineering Research Laboratory,2902 Newmark,Champaign, IL 61822,USA;

    rnUS Army Engineer Research & Development Center, Construction Engineering Research Laboratory,2902 Newmark,Champaign, IL 61822,USA;

    rnUS Army Engineer Research & Development Center, Construction Engineering Research Laboratory,2902 Newmark,Champaign, IL 61822,USA;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bacillus globigii; biofilm; chlorinated; pvc; spore inactivation; water distribution system;

    机译:globigii杆菌生物膜氯化;pvc;孢子灭活;水分配系统;

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