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Interactive Effects of Copper Pipe Stagnation Corrosion Control and Disinfectant Residual Influenced Reduction of

机译:铜管停滞腐蚀控制和消毒剂残留的互动效果

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摘要

Flint, MI experienced two outbreaks of Legionnaires’ Disease (LD) during the summers of 2014 and 2015, coinciding with use of Flint River as a drinking water source without corrosion control. Using simulated distribution systems (SDSs) followed by stagnant simulated premise (i.e., building) plumbing reactors (SPPRs) containing cross-linked polyethylene (PEX) or copper pipe, we reproduced trends in water chemistry and Legionella proliferation observed in the field when Flint River versus Detroit water were used before, during, and after the outbreak. Specifically, due to high chlorine demand in the SDSs, SPPRs with treated Flint River water were chlorine deficient and had elevated L. pneumophila numbers in the PEX condition. SPPRs with Detroit water, which had lower chlorine demand and higher residual chlorine, lost all culturable L. pneumophila within two months. L. pneumophila also diminished more rapidly with time in Flint River SPPRs with copper pipe, presumably due to the bacteriostatic properties of elevated copper concentrations caused by lack of corrosion control and stagnation. This study confirms hypothesized mechanisms by which the switch in water chemistry, pipe materials, and different flow patterns in Flint premise plumbing may have contributed to observed LD outbreak patterns.
机译:弗林特,MI在2014年和2015年的夏季经历了两次军团疾病(LD)的爆发,恰逢弗林特河作为饮用水来源,没有腐蚀控制。使用模拟分配系统(SDSS),然后是含有交联聚乙烯(PEX)或铜管的停滞模拟前提(即,建筑物)管道反应器(SPPRS),我们在弗林特河上繁殖在该领域观察到的水化学和军团增殖的趋势在爆发之前,期间和之后使用与底特律水。具体而言,由于SDSS中的高氯需求,具有处理过的燧石河水的SPPR是氯缺乏,并且在PEX条件下升高了L.肺炎骨粒层。具有底特律水的SPPR,其氯气需求较低,较高的残余氯,在两个月内损失所有培养的L.肺炎。 L.肺炎群岛也随着铜管的燧石河Spprs的时间越快,可能是由于由于缺乏腐蚀控制和停滞而引起的铜浓度的抑菌特性。本研究证实了假设机制,其中水化学,管材和不同流动模式在燧石前提管道中的开关可能有助于观察到的LD爆发图案。

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