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High-temperature fermentation: how can processes for ethanol production at high temperatures become superior to the traditional process using mesophilic yeast?

机译:高温发酵:高温下生产乙醇的方法如何优于使用嗜温酵母的传统方法?

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The process of ethanol fermentation has a long history in the production of alcoholic drinks, but much larger scale production of ethanol is now required to enable its use as a substituent of gasoline fuels at 3%, 10%, or 85% (referred to as E3, E10, and E85, respectively). Compared with fossil fuels, the production costs are a major issue for the production of fuel ethanol. There are a number of possible approaches to delivering cost-effective fuel ethanol production from different biomass sources, but we focus in our current report on high-temperature fermentation using a newly isolated thermotolerant strain of the yeast Kluyveromyces marxianus. We demonstrate that a 5°C increase only in the fermentation temperature can greatly affect the fuel ethanol production costs. We contend that this approach may also be applicable to the other microbial fermentations systems and propose that thermotolerant mesophilic microorganisms have considerable potential for the development of future fermentation technologies. Keywords Kluyveromyces marxianus - Saccharomyces cerevisiae - Fuel - Ethanol - Cost
机译:酒精发酵的过程在酒精饮料的生产中已有悠久的历史,但是现在需要大规模生产乙醇才能使其以3%,10%或85%(称为分别为E3,E10和E85)。与化石燃料相比,生产成本是燃料乙醇生产的主要问题。从不同的生物质来源提供具有成本效益的燃料乙醇生产有多种可能的方法,但是我们在当前的报告中重点介绍了使用新分离的马克斯克鲁维酵母酵母耐热菌株进行的高温发酵。我们证明,仅将发酵温度提高5°C会大大影响燃料乙醇的生产成本。我们认为这种方法也可能适用于其他微生物发酵系统,并提出耐热嗜温微生物具有发展未来发酵技术的巨大潜力。关键词马克斯克鲁维酵母-酿酒酵母-燃料-乙醇-成本

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