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Metal corrosion by aerobic bacteria isolated from stimulated corrosion systems: Effects of additional nitrate sources

机译:从刺激性腐蚀系统中分离出的需氧细菌对金属的腐蚀:其他硝酸盐源的影响

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Many microorganisms are reported to influence the corrosive behaviour of mild steel and stainless steel in different habitats. In this study, 40 bacterial strains were isolated from corroded mild steel and stainless steel coupons in the nitrate supplemented environments. The corrosion abilities of the isolates against the mild steel and stainless steel coupons were tested with or without additional nitrate sources. The presence of bacterial isolates alone stimulated the corrosion of mild steel coupons. Most of the bio-corrosion processes of mild steel coupons were mitigated by adding nitrate supplement with bacterial isolates. The effects of bacterial isolates and additional nitrogen sources on corrosion of stainless steels were varied. Not all bacterial isolates stimulated the corrosion on stainless steel during the study period. Unlike the effects on mild steel coupons, additional NaNO3 might stimulate, retard the corrosion rate by the bacterial isolates or have limited effects. Similar results were obtained when NH4NO3 was used. Phylogenetic analysis demonstrated that all isolates were closely related. The majority of the bacterial isolates from corroded metal coupons were identified as Bacillus species. Others were identified as Pseudomonas sp., Marinobacter sp., and Halomonas species. The results prove that the isolated aerobic microorganisms do play a role in the corrosion process of stainless and mild steel. Adding additional nitrate sources might be a tool to mitigate corrosion of mild steel which was stimulated by the presence of bacteria. However, to prevent the corrosion of stainless steels, it might need a trial and errors approach in each case
机译:据报道,许多微生物会影响低碳钢和不锈钢在不同生境中的腐蚀行为。在这项研究中,在硝酸盐补充环境中,从腐蚀的低碳钢和不锈钢试样中分离出40种细菌菌株。在有或没有其他硝酸盐源的情况下,测试了隔离物对低碳钢和不锈钢试样的腐蚀能力。仅细菌分离物的存在就刺激了低碳钢试样的腐蚀。通过在细菌分离物中添加硝酸盐,可以缓解低碳钢试样块的大部分生物腐蚀过程。细菌分离物和其他氮源对不锈钢腐蚀的影响各不相同。在研究期间,并非所有细菌分离物都能刺激不锈钢腐蚀。与对低碳钢试样片的影响不同,额外的NaNO3可能会刺激细菌,降低细菌分离物的腐蚀速率或影响有限。当使用NH4NO3时,获得了相似的结果。系统发育分析表明,所有分离株密切相关。来自受腐蚀的金属试样的大多数细菌分离物被鉴定为芽孢杆菌属。其他被鉴定为假单胞菌属物种,马氏杆菌属物种和嗜盐单胞菌属物种。结果证明,分离出的好氧微生物确实在不锈钢和低碳钢的腐蚀过程中起作用。添加额外的硝酸盐源可能是减轻低碳钢腐蚀的一种工具,而低碳钢的腐蚀是由于细菌的存在而引起的。但是,为防止不锈钢腐蚀,在每种情况下都可能需要反复试验的方法

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