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脱硫脱硫弧菌生物膜与不锈钢表面的相互作用及其对细菌代谢的影响。

Interaction of Desulfovibrio desulfuricans biofilms with stainless steel surface and its impact on bacterial metabolism.

作者信息

Lopes F A, Morin P, Oliveira R, Melo L F

机构信息

Centro de Engenharia Biológica, Universidade do Minho, Braga, Portugal.

出版信息

J Appl Microbiol. 2006 Nov;101(5):1087-95. doi: 10.1111/j.1365-2672.2006.03001.x.

Abstract

AIMS

To study the influence of some metallic elements of stainless steel 304 (SS 304) on the development and activity of a sulfate-reducing bacterial biofilm, using as comparison a reference nonmetallic material polymethylmethacrylate (PMMA).

METHODS AND RESULTS

Desulfovibrio desulfuricans biofilms were developed on SS 304 and on a reference nonmetallic material, PMMA, in a flow cell system. Steady-state biofilms were metabolically more active on SS 304 than on PMMA. Activity tests with bacteria from both biofilms at steady state also showed that the doubling time was lower for bacteria from SS 304 biofilms. The influence of chromium and nickel, elements of SS 304 composition, was also tested on a cellular suspension of Des. desulfuricans. Nickel decreased the bacterial doubling time, while chromium had no significant effect.

CONCLUSIONS

The following mechanism is hypothesized: a Des. desulfuricans biofilm grown on a SS 304 surface in anaerobic conditions leads to the weakening of the metal passive layer and to the dissolution in the bulk phase of nickel ions that have a positive influence on the sulfate-reducing bacteria metabolism. This phenomenon may enhance the biocorrosion process.

SIGNIFICANCE AND IMPACT OF THE STUDY

A better understanding of the interactions between metallic surfaces such as stainless steel and bacteria commonly implied in the corrosion phenomena which is primordial to fight biocorrosion.

摘要

目的

研究304不锈钢(SS 304)的某些金属元素对硫酸盐还原菌生物膜生长及活性的影响,并以参考非金属材料聚甲基丙烯酸甲酯(PMMA)作为对照。

方法与结果

在流动池系统中,在SS 304和参考非金属材料PMMA上培养脱硫弧菌生物膜。稳态生物膜在SS 304上的代谢活性高于在PMMA上。对两种稳态生物膜中的细菌进行活性测试,结果还表明,来自SS 304生物膜的细菌倍增时间更短。还对SS 304成分中的铬和镍元素对脱硫弧菌细胞悬液的影响进行了测试。镍降低了细菌的倍增时间,而铬没有显著影响。

结论

推测了以下机制:在厌氧条件下,生长在SS 304表面的脱硫弧菌生物膜会导致金属钝化层减弱,镍离子在本体相中溶解,这对硫酸盐还原菌的代谢有积极影响。这种现象可能会增强生物腐蚀过程。

研究的意义和影响

更好地理解不锈钢等金属表面与腐蚀现象中常见细菌之间的相互作用,这对于对抗生物腐蚀至关重要。

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