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Molecular Microbiological Methods to Investigate Microbial Influenced Corrosion in Fully Integrated Kraft Pulp and Paper Mills

机译:用于研究全集成牛皮纸和造纸厂的微生物影响微生物影响的分子微生物方法

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MIC often contributes to corrosion in paper mills despite the seemingly inhospitable conditions for microbial growth. Molecular microbiological methods most notably quantitative polymerase chain reaction (qPCR) were employed to examine MIC at three paper mills with unique operations and construction materials. Despite raw water treatment, qPCR quantification of total bacteria and specific MIC associated microbial groups revealed growth of substantial and diverse microbial populations which had not been identified with cultivation based methods. Moreover, qPCR quantification of several microbial groups highlighted their roles in MIC. At most facilities including one experiencing corrosion of UNS S31254, iron oxidizing bacteria (IOB) were detected at high concentrations (1.00 x 108 cells/g). The actions of IOB were confirmed by x-ray diffraction analysis demonstrating production of iron oxyhydroxides (e.g. hematite). Fermenting bacteria were also routinely detected. Along with direct impacts, volatile fatty acids and hydrogen produced during fermentation support growth of other anaerobic microorganisms linked to MIC. Consistent with tubercle formation and biofilm maturation, sulfate reducing bacteria (SRB) and methanogens were detected in some solid phase samples. Overall, the qPCR results suggest biomass growth within the system, IOB activity and tubercle formation followed by proliferation of fermenters and eventually SRB and methanogens under the deposits.
机译:麦克风通常有助于造纸厂的腐蚀,尽管似乎似乎是微生物生长的含水条件。分子微生物方法最符放的定量聚合酶链反应(QPCR)用于在三个造纸厂中检测麦克风,具有独特的操作和建筑材料。尽管原水处理,QPCR定量总细菌和特定的MIC相关微生物组揭示了尚未用培养的方法鉴定的大量和多种微生物种群的生长。此外,QPCR定量几个微生物组的量化突出了它们在麦克风中的作用。在大多数设施包括一个经历Unt S31254的经历腐蚀,在高浓度(1.00×108个细胞/ g)中检测氧化氧化细菌(IOB)。通过X射线衍射分析证实了IOB的作用,证明了铁羟基氧化铁的生产(例如赤铁矿)。还经常检测到发酵细菌。随着发酵期间产生的直接影响,挥发性脂肪酸和氢气在与MIC连接的其他厌氧微生物的生长。在一些固相样品中检测到与结节形成和生物膜成熟,硫酸盐还原细菌(SRB)和甲烷一致。总体而言,QPCR结果表明系统内的生物质生长,IOB活性和结节形成,然后在沉积物下进行发酵罐和最终SRB和甲烷。

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