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Characterization of biofilm bacterial communities and cast iron corrosion in bench-scale reactors with chloraminated drinking water

机译:含氯饮用水的台式反应器中生物膜细菌群落和铸铁腐蚀的表征

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Biofilm bacterial communities and cast iron corrosion were studied in bench-scale reactors with chloraminated drinking water. Before 6 d, alpha-FeOOH was predominant in corrosion scales, and the main bacterial genera were Acidovorax and Aquabacterium with higher iron corrosion and release. After this point, Fe3O4 was formed, and Azospira and Dechloromonas became the main bacterial genera with lower iron corrosion and release. Principal component analysis (PCA) showed good correlation among the bacterial genera, corrosion rate, and the content of alpha-FeOOH and Fe3O4 in corrosion scales. Moreover, most probable number (MPN) enumerations indicated that the main nitrate-reducing bacteria (NRB), iron-oxidizing bacteria (IOB) and iron-reducing bacteria (IRB), could induce oxidation of Fe(II) and reduction of Fe(III) inside the corrosion scales. It was also verified that the process of Fe redox possibly induced by these microorganism respiration, could drive the transformation of alpha-FeOOH to Fe3O4. This resulted in higher inhibition of iron corrosion and release in chloraminated drinking water than that in sterile water. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在带有氯化饮用水的台式反应器中研究了生物膜细菌群落和铸铁腐蚀。 6 d之前,α-FeO​​OH在腐蚀尺度上占优势,主要细菌属是Acidovorax和Aquabacter,铁的腐蚀和释放较高。此后,Fe3O4形成,并且偶氮螺菌和脱氯单胞菌成为铁细菌腐蚀和释放较低的主要细菌属。主成分分析(PCA)显示细菌属,腐蚀速率以及腐蚀范围内的α-FeO​​OH和Fe3O4含量之间具有良好的相关性。此外,最可能的数字(MPN)枚举表明,主要的硝酸盐还原细菌(NRB),铁氧化细菌(IOB)和铁还原细菌(IRB)可以诱导Fe(II)的氧化和Fe(三)内部的腐蚀水垢。还证实了这些微生物呼吸可能引起的Fe氧化还原过程,可以驱动α-FeO​​OH向Fe3O4的转化。这导致对氯化铁饮用水中铁腐蚀和释放的抑制作用比对无菌水中的抑制作用强。 (C)2015 Elsevier Ltd.保留所有权利。

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