Key Lab of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen, 361021, People's Republic of China.
University of Chinese Academy of Sciences, Beijing, 100049, People's Republic of China.
Folia Microbiol (Praha). 2020 Apr;65(2):371-380. doi: 10.1007/s12223-019-00744-w. Epub 2019 Aug 7.
Microbial contamination poses a great threat to aviation system security through mechanisms such as microbiologically influenced corrosion (MIC), fuel filter clogging, and fuel deterioration. In this study, a survey of microbial contamination in aviation fuel obtained from aircraft fuel tanks was performed to test the relationship between microbial contamination and aircraft service life. The contaminating microorganisms were counted, isolated, identified, and subjected to preliminary characterization. A low risk of microbial contamination in the selected samples was confirmed, and there was no significant difference in the counts between culturable bacteria and fungi (p > 0.05). Phylogenetic analysis tree indicated that the diversity of culturable microorganisms was rather low, with 17 bacterial isolates belonging to 13 genera and 12 fungal isolates belonging to 5 genera. No yeast was isolated. The growth characteristics of these isolates indicated that the aircraft fuel tanks harbored various microorganisms that were able to utilize the aviation fuel as a source of carbon and energy. Meanwhile, some isolates caused emulsification and produced acid. The conclusions of this study were that various hazardous microorganisms can root in aircraft aviation fuel tanks. There was no relationship between microbial contamination and aircraft service life (p > 0.05), and continuous good maintenance suppressed microbial proliferation.
微生物污染通过微生物影响腐蚀(MIC)、燃料过滤器堵塞和燃料恶化等机制对航空系统安全构成了巨大威胁。本研究对从飞机油箱中获得的航空燃料中的微生物污染进行了调查,以检验微生物污染与飞机使用寿命之间的关系。对污染微生物进行了计数、分离、鉴定和初步表征。证实所选样品中微生物污染的风险很低,可培养细菌和真菌的数量之间没有显著差异(p>0.05)。系统发育分析树表明,可培养微生物的多样性相当低,有 17 个细菌分离株属于 13 个属,12 个真菌分离株属于 5 个属。未分离到酵母。这些分离株的生长特性表明,飞机油箱中存在各种能够利用航空燃料作为碳源和能源的微生物。同时,一些分离株引起乳化并产生酸。本研究的结论是,各种有害微生物都可能在飞机航空燃料箱中扎根。微生物污染与飞机使用寿命之间没有关系(p>0.05),持续良好的维护抑制了微生物的增殖。