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Biofilm formation and ethanol inhibition by bacterial contaminants of biofuel fermentation

机译:生物燃料发酵过程中细菌污染物对生物膜的形成和乙醇的抑制作用

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摘要

Bacterial contaminants can inhibit ethanol production in biofuel fermentations, and even result in stuck fermentations. Contaminants may persist in production facilities by forming recalcitrant biofilms. A two-year longitudinal study was conducted of bacterial contaminants from a Midwestern dry grind corn fuel ethanol facility. Among eight sites sampled in the facility, the combined liquefaction stream and yeast propagation tank were consistently contaminated, leading to contamination of early fermentation tanks. Among 768 contaminants isolated, 92% were identified as Lactobacillus sp., with the most abundant species being Lactobacillus plantarum, Lactobacillus casei, Lactobacillus mucosae, and Lactobacillus fermentum. Seven percent of total isolates showed the ability to form biofilms in pure cultures, and 22% showed the capacity to significantly inhibit ethanol production. However, these traits were not correlated. Ethanol inhibition appeared to be related to acetic acid production by contaminants, particularly by obligately heterofermentative species such as L. fermentum and L. mucosae. Published by Elsevier Ltd.
机译:细菌污染物会抑制生物燃料发酵过程中乙醇的产生,甚至导致发酵停滞。污染物可能会通过形成顽固的生物膜而残留在生产设施中。对来自中西部干磨玉米燃料乙醇工厂的细菌污染物进行了为期两年的纵向研究。在该工厂的八个采样点中,液化流和酵母菌繁殖池始终受到污染,导致早期发酵池受到污染。在分离出的768种污染物中,有92%被鉴定为乳杆菌属,最丰富的物种是植物乳杆菌,干酪乳杆菌,粘膜乳杆菌和发酵乳杆菌。总分离物的百分之七具有在纯培养物中形成生物膜的能力,百分之二十二具有显着抑制乙醇产生的能力。但是,这些特征没有关联。乙醇的抑制作用似乎与污染物产生的乙酸有关,尤其是专一性的发酵菌,例如发酵乳杆菌和粘膜乳杆菌。由Elsevier Ltd.发布

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