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Lipids from yeasts and fungi: Tomorrow's source of biodiesel?

机译:来自酵母和真菌的脂质:明天的生物柴油来源?

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In the search for new transport fuels from renewable resources, biodiesel from microbial lipids comes into view. We have evaluated the lipid yield and energy use of a process for production of biodiesel from agricultural waste using lipid-accumulating yeast and fungi. We included different bioreactors for submerged and solid-state fermentation in our evaluation. Using existing kinetic models, we predict lipid yields on substrate between 5% and 19% (w/w), depending on the culture system. According to the same models, improvement of the yield to 25-30% (w/w) is possible, for example by genetic modification of the micro-organisms. The net energy ratio of the non-optimized systems varies between 0.8 and 2.5 MJ produced per MJ used; energy use for pre-treatment and for oxygen transfer are most important. For the optimized systems, the net energy ratio increases to 2.9-5.5 MJ produced per MJ used, which can compete very well with other biofuels such as bioethanol or algal biodiesel. This shows that, although quite some work still has to be done, microbial lipids have the potential to be tomorrow's source of biodiesel. (c) 2013 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:在寻找新的可再生资源的新运输燃料中,来自微生物脂质的生物柴油进入了视野。我们已经评估了使用脂质积累酵母和真菌从农业废物生产生物柴油的过程和能量使用的脂质产量和能量使用。我们在评估中包括不同的生物反应器,用于浸没和固态发酵。使用现有的动力学模型,根据培养系统,我们预测脂质产量在5%至19%(w / w)之间的脂质产量。根据相同的型号,例如通过微生物的遗传改性,可以提高产率至25-30%(w / w)。非优化系统的净能量比在每MJ使用的0.8和2.5 MJ之间变化;用于预处理和氧气转移的能源用途是最重要的。对于优化的系统,净能量比使用的净能量比率增加到2.9-5.5 MJ,其使用,这可以与其他生物燃料相匹配,例如生物乙醇或藻类生物柴油。这表明,虽然必须进行相当多的工作,但微生物脂质有可能是明天的生物柴油来源。 (c)2013化学工业协会和约翰瓦利和儿子有限公司

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