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Characterization of biofilm and corrosion of cast iron pipes in drinking water distribution system with UV/Cl-2 disinfection

机译:UV / Cl-2消毒技术在饮用水分配系统中生物膜的特征和铸铁管的腐蚀

摘要

The effect of UV/Cl-2 disinfection on the biofilm and corrosion of cast iron pipes in drinking water distribution system were studied using annular reactors (ARs). Passivation occurred more rapidly in the AR with UV/Cl-2 than in the one with Cl-2 alone, decreasing iron release for higher corrosivity of water. Based on functional gene, pyrosequencing assays and principal component analysis, UV disinfection not only reduced the required initial chlorine dose, but also enhanced denitrifying functional bacteria advantage in the biofilm of corrosion scales. The nitrate-reducing bacteria (NRB) Dechloromonas exhibited the greatest corrosion inhibition by inducing the redox cycling of iron to enhance the precipitation of iron oxides and formation of Fe3O4 in the AR with UV/Cl-2, while the rhizobia Bradyrhizobium and Rhizobium, and the NRB Sphingomonas, Brucella producing siderophores had weaker corrosion-inhibition effect by capturing iron in the AR with Cl-2. These results indicated that the microbial redox cycling of iron was possibly responsible for higher corrosion inhibition and lower effect of water Larson-Skold Index (LI) changes on corrosion. This finding could be applied toward the control of water quality in drinking water distribution systems. (C) 2014 Elsevier Ltd. All rights reserved.
机译:使用环形反应器研究了UV / Cl-2消毒对饮用水分配系统中生铁管生物膜和腐蚀的影响。与单独使用Cl-2相比,使用UV / Cl-2的AR中钝化发生的速度更快,从而减少了铁的释放,从而提高了水的腐蚀性。基于功能基因,焦磷酸测序分析和主成分分析,紫外线消毒不仅减少了所需的初始氯剂量,而且还增强了在腐蚀垢生物膜中反硝化功能细菌的优势。硝酸盐还原菌(NRB)的十氯单胞菌具有最大的腐蚀抑制作用,它通过诱导铁的氧化还原循环来增强UV / Cl-2中AR中铁氧化物的沉淀和Fe3O4的形成,而根瘤菌缓生根瘤菌和根瘤菌以及NRB鞘氨醇单胞菌布鲁氏菌产生的铁载体通过用Cl-2捕获AR中的铁而具有较弱的缓蚀作用。这些结果表明,铁的微生物氧化还原循环可能是造成较高的腐蚀抑制作用和较低的水Larson-Skold指数(LI)变化对腐蚀的影响的原因。该发现可用于饮用水分配系统中水质的控制。 (C)2014 Elsevier Ltd.保留所有权利。

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