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首页> 外文期刊>Industrial Crops and Products >Biodiesel-derived crude glycerol as alternative feedstock for single cell oil production by the oleaginous yeast Candida viswanathii Y-E4
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Biodiesel-derived crude glycerol as alternative feedstock for single cell oil production by the oleaginous yeast Candida viswanathii Y-E4

机译:生物柴油衍生的粗甘油作为单细胞油生产的替代原料,由Oleafipous酵母念珠菌念珠菌y-e4

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In recent years, much attention has been paid to microbial lipids as promising raw materials for biodiesel production. The use of industrial by-products as carbon sources seems to be a feasible strategy for cost-effective lipid fermentation with oleaginous microorganisms on a large scale. In this work, biodiesel-derived crude glycerol was used as a renewable feedstock for microbial lipid production. Chemical characterization has shown that used crude glycerol sample is mainly composed of 64.5 % glycerol, 5.9 % methanol, 11 % water and 5.8 % ash in addition to other impurities. This industrial waste was used as only carbon source in the culture media of 13 oleaginous yeast strains. Candida viswanathii Y-E4 stood out above the other strains, achieving a higher amount of biomass and lipid content (17.2 g/L and 41 %, respectively). Culture conditions were optimized using response surface methodology to enhance the Y-E4 lipid yield. Box-Behnken model was performed to determine the optimum levels of three independent variables and the eventual effect of their interactions on the response. Under optimal conditions, the total biomass of 26.6 g/L with lipid content of 51.9 % (corresponding to a lipid yield of 13.6 g/L) could be achieved after 166 h of culture. The characterization of obtained lipid showed that fatty acids composition and lipid profile were very different between pure and crude glycerol based cultures, with a predominance of long-chain fatty acids, particularly polyunsaturated fatty acids such as linoleic acid (45 %). The predictive determination of biodiesel properties suggests that this oil may effectively be used for biodiesel manufacture. The current study, therefore, opens new perspectives in relation to the valorization of biodiesel-derived crude glycerol, through completely eco-friendly processes.
机译:近年来,对微生物脂质的重视被关注作为生物柴油生产的有希望的原料。作为碳源的工业副产品的使用似乎是具有大规模含有芦荟微生物的成本效益的脂质发酵的可行策略。在这项工作中,使用生物柴油衍生的粗甘油作为用于微生物脂质生产的可再生原料。除了与其他杂质外,使用的粗甘油样品主要由64.5%甘油,5.9%甲醇,11%水和5.8%灰分组成。该工业废物仅在13个含有13颗酵母菌株的培养基中仅使用碳源。 Candida Viswanathii Y-E4在其他菌株上方脱颖而出,达到较高量的生物质和脂质含量(分别为17.2克/升和41%)。使用响应面方法优化培养条件,以增强Y-E4脂质产率。表演Box-Behnken模型以确定三个独立变量的最佳水平和它们对响应相互作用的最终效果。在最佳条件下,脂质含量为51.9%(对应于13.6g / L的脂质产率)的总生物质可以在166小时后实现。获得的脂质的表征显示,脂肪酸组合物和脂质型在纯的甘油基于甘油的培养物之间非常不同,具有长链脂肪酸,特别是多不饱和脂肪酸如亚油酸(45%)。生物柴油特性的预测测定表明该油可以有效地用于生物柴油制造。因此,目前的研究通过完全环保方法与生物柴油衍生的粗甘油的算子相关的新视角。

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