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Iron corrosion activity of anaerobic hydrogen-consuming microorganisms isolated from oil facilities

机译:从石油设施中分离出来的厌氧耗氢微生物的铁腐蚀活性

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The purpose of the present study was to test the hypothesis that anaerobic hydrogen-consuming microorganisms generally promote iron corrosion. We isolated 26 hydrogen-consuming microorganisms (acetogens, sulfate-reducing bacteria, and methanogens) from oil facilities in Japan using hydrogen as an electron donor. The iron corrosion activities of these microorganisms were examined using iron (Fe~0) granules as the sole electron donor. Almost all the isolates consumed hydrogen that was chemically generated from iron granules but did not induce significant iron corrosion. The amount of corroded iron in the cultures of these organisms was less than 2-fold that in an abiotic chemical corrosion reaction. These results indicated that hydrogen consumption did not strongly stimulate iron corrosion. On the other hand, one isolate, namely, Methanococcus maripaludis Miclc10, considerably corroded iron: this phenomenon was not accompanied by hydrogen consumption, methane formation, or cell growth. This finding also provided strong evidence that M. maripaludis Miclc10 produced some material that caused iron to corrode.
机译:本研究的目的是检验以下假设:厌氧耗氢微生物通常会促进铁腐蚀。我们使用氢作为电子供体,从日本的石油设施中分离出26种耗氢的微生物(产乙酸酶,还原硫酸盐的细菌和产甲烷菌)。使用铁(Fe〜0)颗粒作为唯一的电子供体,检查了这些微生物的铁腐蚀活性。几乎所有分离株都消耗了从铁颗粒中化学生成的氢,但并未引起明显的铁腐蚀。在这些生物的培养物中,铁的腐蚀量少于非生物化学腐蚀反应中的2倍。这些结果表明,氢消耗没有强烈刺激铁腐蚀。另一方面,一个分离物,即马氏甲烷球菌Miclc10,严重腐蚀了铁:这种现象没有伴随氢消耗,甲烷形成或细胞生长。这一发现也提供了有力的证据,证明M. maripaludis Miclc10产生了一些导致铁腐蚀的物质。

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