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Biodiesel-Derived Glycerol Obtained from Renewable Biomass—A Suitable Substrate for the Growth of Candida zeylanoides Yeast Strain ATCC 20367

机译:从可再生生物量获得的生物柴油衍生甘油—玉米ze假丝酵母酵母菌株ATCC 20367生长的合适底物

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摘要

Used kitchen oil represents a feasible and renewable biomass to produce green biofuels such as biodiesel. Biodiesel production generates large amounts of by-products such as the crude glycerol fraction, which can be further used biotechnologically as a valuable nutrient for many microorganisms. In this study, we transesterified used kitchen oil with methanol and sodium hydroxide in order to obtain biodiesel and crude glycerol fractions. The crude glycerol fraction consisting of 30% glycerol was integrated into a bioreactor cultivation process as a nutrient source for the growth of Candida zeylanoides ATCC 20367. Cell viability and biomass production were similar to those obtained with batch cultivations on pure glycerol or glucose as the main nutrient substrates. However, the biosynthesis of organic acids (e.g., citric and succinic) was significantly different compared to pure glycerol and glucose used as main carbon sources.
机译:用过的厨房油代表了一种可行的可再生生物质,可以生产绿色生物燃料,例如生物柴油。生物柴油的生产会产生大量的副产物,例如粗甘油馏分,可以进一步在生物技术上用作许多微生物的宝贵营养素。在这项研究中,我们用甲醇和氢氧化钠对用过的厨房油进行酯交换,以获得生物柴油和粗甘油馏分。由30%甘油组成的粗甘油级分被整合到生物反应器培养过程中,作为养分念珠菌ATCC 20367生长的营养源。细胞活力和生物量生产与以纯甘油或葡萄糖为主要成分的分批培养获得的细胞活力和生物量相似。营养底物。但是,与用作主要碳源的纯甘油和葡萄糖相比,有机酸(例如柠檬酸和琥珀酸)的生物合成存在显着差异。

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