Danish Technological Institute, Kongsvang Alle 29, DK-8000 Aarhus C, Denmark.
Bioresour Technol. 2011 Apr;102(8):5259-64. doi: 10.1016/j.biortech.2011.02.017. Epub 2011 Feb 13.
Introduction of biofuels to the fuel matrix poses new questions and challenges. The present study investigates the microbiological stability of biodiesel blends in small scale microcosms. The study presents results from incubations of diesel-biodiesel blends with contaminated inoculation water collected from diesel storage tanks to ensure the presence of relevant fuel degrading bacteria. DAPI and qPCR analyses has subsequently shown an increased bacterial growth and activity in the microcosms containing biodiesel blends as the carbon source compared to those microcosms where neat fossil diesel made up the carbon source. Several anaerobic microorganisms have been identified after incubation. Presence of methanogens, sulfate-reducing bacteria and nitrate reducing bacteria has furthermore been confirmed by chemical analyses, supplemented by observations of methane formation in biodiesel incubations. The findings will contribute to the knowledge base for a safer introduction of biodiesel in the fuel matrix by employment of proper house-keeping and monitoring methods.
生物燃料引入燃料基质带来了新的问题和挑战。本研究在小型微宇宙中调查了生物柴油混合物的微生物稳定性。该研究展示了从柴油储存罐中收集的受污染接种水的柴油-生物柴油混合物的孵育结果,以确保存在相关的燃料降解细菌。随后的 DAPI 和 qPCR 分析表明,与以纯化石柴油作为碳源的微宇宙相比,含有生物柴油混合物作为碳源的微宇宙中细菌的生长和活性增加。孵育后鉴定出了几种厌氧微生物。通过化学分析进一步证实了产甲烷菌、硫酸盐还原菌和硝酸盐还原菌的存在,并通过观察生物柴油孵育过程中甲烷的形成得到了补充。这些发现将通过采用适当的维护和监测方法,为在燃料基质中更安全地引入生物柴油提供知识基础。