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首页> 外文期刊>Journal of microbiology and biotechnology >Effects of Iron-Reducing Bacteria on Carbon Steel Corrosion Induced by Thermophilic Sulfate-Reducing Consortia
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Effects of Iron-Reducing Bacteria on Carbon Steel Corrosion Induced by Thermophilic Sulfate-Reducing Consortia

机译:还原铁细菌对嗜热硫酸盐还原团引起的碳钢腐蚀的影响

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摘要

Four thermophilic bacterial species, including the iron-reducing bacterium Geobacillus sp. G2 and the sulfate-reducing bacterium Desulfotomaculum sp. SRB-M, were employed to integrate a bacterial consortium. A second consortium was integrated with the same bacteria, except for Geobacillus sp. G2. Carbon steel coupons were subjected to batch cultures of both consortia. The corrosion induced by the complete consortium was 10 times higher than that induced by the second consortium, and the ferrous ion concentration was consistently higher in ironreducing consortia. Scanning electronic microscopy analysis of the carbon steel surface showed mineral films colonized by bacteria. The complete consortium caused profuse fracturing of the mineral film, whereas the non-iron-reducing consortium did not generate fractures. These data show that the iron-reducing activity of Geobacillus sp. G2 promotes fracturing of mineral films, thereby increasing steel corrosion.
机译:四种嗜热细菌物种,包括还原铁细菌Geobacillus sp.。 G2和硫酸盐还原细菌Desulfotomaculum sp。 SRB-M被用于整合细菌联合体。第二个财团与相同细菌整合在一起,除了Geobacillus sp.。 G2。碳钢试样块经过两个财团的分批培养。完整的联合体引起的腐蚀比第二个联合体引起的腐蚀高10倍,并且铁离子还原联合体中的亚铁离子浓度始终较高。碳钢表面的扫描电子显微镜分析表明,被细菌定植的矿物膜。完整的财团造成了矿物膜的大量破裂,而非铁还原财团则没有产生裂缝。这些数据表明,Geobacillus sp。的还原铁活性。 G2促进矿物膜的破裂,从而增加钢的腐蚀。

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