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Corrosion of aluminum alloy 2024 by microorganisms isolated from aircraft fuel tanks

机译:从飞机油箱中分离出的微生物对2024铝合金的腐蚀

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Microorganisms frequently contaminate jet fuel and cause corrosion of fuel tank metals. In the past, jet fuel contaminants included a diverse group of bacteria and fungi. The most common contaminant was the fungus Hormoconis resinae. However, the jet fuel community has been altered by changes in the composition of the fuel and is now dominated by bacterial contaminants. The purpose of this research was to determine the composition of the microbial community found in fuel tanks containing jet propellant-8 (JP-8) and to determine the potential of this community to cause corrosion of aluminum alloy 2024 (AA2024). Isolates cultured from fuel tanks containing JP-8 were closely related to the genus Bacillus and the fungi Aureobasidium and Penicillium. Biocidal activity of the fuel system icing inhibitor diethylene glycol monomethyl ether is the most likely cause of the prevalence of endospore forming bacteria. Electrochemical impedance spectroscopy and metallographic analysis of AA2024 exposed to the fuel tank environment indicated that the isolates caused corrosion of AA2024. Despite the limited taxonomic diversity of microorganisms recovered from jet fuel, the community has the potential to corrode fuel tanks.
机译:微生物经常污染喷气燃料并导致燃料箱金属腐蚀。过去,喷气燃料的污染物包括各种各样的细菌和真菌。最常见的污染物是真菌Hormoconis resinae。但是,喷气燃料社区已因燃料成分的变化而发生了变化,现在已被细菌污染物所占据。这项研究的目的是确定在包含喷气推进剂8(JP-8)的燃油箱中发现的微生物群落的组成,并确定该群落引起铝合金2024(AA2024)腐蚀的潜力。从装有JP-8的油箱中培养的分离物与芽孢杆菌属,金黄色葡萄球菌和青霉属真菌密切相关。燃料系统防冰剂二甘醇单甲醚的杀生物活性是形成内生孢子细菌的最可能原因。暴露在燃料箱环境中的AA2024的电化学阻抗谱和金相分析表明,分离物引起AA2024的腐蚀。尽管从喷气燃料中回收的微生物在分类学上的多样性有限,但该社区仍有可能腐蚀油箱。

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