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The effect of metal microstructure on the initial attachment of Escherichia coli to 1010 carbon steel

机译:金属微观结构对大肠杆菌与1010碳钢初始附着的影响

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摘要

Metallurgical features have been shown to play an important role in the attachment of microorganisms to metal surfaces. In the present study, the influence of the microstructure of as-received (AR) and heat-treated (HT) 1010 carbon steel on the initial attachment of bacteria was investigated. Heat treatment was carried out with the aim of increasing the grain size of the carbon steel coupons. Mirror-polished carbon steel coupons were immersed in a minimal medium inoculated with Escherichia coli (ATCC 25922) to investigate the early (15, 30 and 60min) and relatively longer-term (4h) stages of bacterial attachment. The results showed preferential colonisation of bacteria on the grain boundaries of the steel coupons. The bacterial attachment to AR steel coupons was relatively uniform compared to the HT steel coupons where an increased number of localised aggregates of bacteria were found. Quantitative analysis showed that the ratio of the total number of isolated (ie single) bacteria to the number of bacteria in aggregates was significantly higher on the AR coupons than the HT coupons. Longer-term immersion studies showed production of extracellular polymeric substances by the bacteria and corrosion at the grain boundaries on both types of steel coupon tested.
机译:冶金特征已显示在微生物附着于金属表面上起重要作用。在本研究中,研究了原样(AR)和热处理(HT)1010碳钢的显微组织对细菌初始附着的影响。进行热处理是为了增加碳钢试样的晶粒尺寸。将镜面抛光的碳钢试样浸入接种了大肠杆菌的基本培养基中(ATCC 25922),以研究细菌附着的早期阶段(15、30和60分钟)和相对长期阶段(4h)。结果表明,在钢样的晶界上细菌优先定居。与HT钢样相比,AR钢样上的细菌附着相对均匀,而HT钢样中发现的细菌局部聚集体数量增加。定量分析表明,AR优惠券上分离的(即单个)细菌总数与聚集体中细菌总数的比率明显高于HT优惠券。长期的浸没研究表明,细菌的产生会产生胞外聚合物质,并且两种测试钢样都在晶界腐蚀。

著录项

  • 来源
    《Biofouling》 |2013年第8期|939-952|共14页
  • 作者单位

    Faculty of Engineering and Industrial Sciences, Biotactical Engineering, IRIS, Swinburne University of Technology, Hawthorn, Australia;

    Faculty of Engineering and Industrial Sciences, Biotactical Engineering, IRIS, Swinburne University of Technology, Hawthorn, Australia;

    Faculty of Engineering and Industrial Sciences, Biotactical Engineering, IRIS, Swinburne University of Technology, Hawthorn, Australia;

    Faculty of Engineering and Industrial Sciences, Biotactical Engineering, IRIS, Swinburne University of Technology, Hawthorn, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bacterial attachment; carbon steel; grain boundaries; heat treatment; microstructure;

    机译:细菌附着碳素钢;晶界热处理;微观结构;

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