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Finger Millet as a Sustainable Feedstock for Bioethanol Production

机译:手指小米作为生物乙醇生产的可持续原料

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The current trend in volatile oil prices, global warming and environmental pollution, has encouraged major consumers worldwide to sharply increase their use of “green” fuels. Bioethanol is usually obtained from the conversion of carbon-based feedstock. Bioethanol from biomass sources is the principal fuel used as a fossil fuels’ substitute for road transport vehicles. Bioethanol is predominantly produced by the sugar fermentation process, although it can also be generated by the chemical process of reacting ethylene with steam. Finger millet (Eleusine coracana) is also known as Ragi (India), Kodo (Nepal), Uburo (Rwanda), Kurakkan (Srilanka), Bulo (Uganda), Kambale (Zambia) and Tamba (Nigeria) and can be used as an efficient source for bioethanol production. Despite all its importance, however, finger millet is still grossly undervalued both scientifically and internationally. This review observes current progress in bioethanol production from E. coracana feedstock and the effectiveness of various technological approaches for that. The main aspects of ethanol production from finger millet seeds have been considered. Seeds, which are already used for brewing, are the most obvious variant of feedstock for ethanol production from this crop. The conversion of finger millet straw and agricultural waste into bioethanol has also been reviewed. Practical results of development and testing the tentative technology of sweet sorghum and finger millet combined processing into bioethanol are described. The concept of the tentative technology of bioethanol production from carbohydrate raw material of the first and second generations is suggested.
机译:目前挥发油价,全球变暖和环境污染的趋势,鼓励全世界主要消费者大幅增加了他们对“绿色”燃料的使用。生物乙醇通常从碳基原料的转化中获得。生物质来源的生物乙醇是用作化石燃料的主要燃料替代公路运输车辆。生物乙醇主要由糖发酵过程产生,尽管它也可以通过使乙烯与蒸汽反应的化学过程产生。手指小米(Eleusine coracana)也被称为ragi(印度),kodo(尼泊尔),uburo(rwanda),kurakkan(srilanka),buro(乌干达),kambale(赞比亚)和tamba(尼日利亚),可以用作生物乙醇生产的高效来源。然而,尽管重要的是,但是,手指小米仍然在科学和国际上仍然被低估。本综述观察到E. Coracana Feipstock的生物乙醇生产的进展以及各种技术方法的有效性。考虑了从手指小米种子的乙醇生产的主要方面。已经用于酿造的种子是从该作物的乙醇生产原料最明显的原料变体。还审查了手指小米秸秆和农业废物转化为生物乙醇。描述了开发和测试甜高粱和手指小米组合加工成生物乙醇的实际结果。提出了第一代和第二代碳水化合物原料的生物乙醇生产概念的概念。

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