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Separate hydrolysis and fermentation and simultaneous saccharification and fermentation methods in bioethanol production and formation of volatile by-products from selected corn cultivars

机译:双乙醇生产中的分离水解和发酵及同时糖化和发酵方法,从选定的玉米品种中形成挥发性副产品

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Corn (Zea mays L.) is a widely used raw material in the production of bioethanol. Creating new cultivars and applying appropriate fermentation techniques to increase production efficiency is still important for bioethanol producers. The purpose of the study presented here was to evaluate the correlation between differentiators of corn cultivars and fermentation methods in view of the efficiency of bioethanol production. The five selected cultivars differed by FAO (Food and Agriculture Organization) number, type of hybrid cultivar, and type of grain. The tested samples generally showed significant (p & 0.05) differences in starch contents. Ethanol fermentation was investigated using separate hydrolysis and fermentation (SHF) as well as simultaneous saccharification and fermentation (SSF) methods The SSF method proved the most effective for the production of bioethanol, regardless of cultivar. The greatest ethanol yield (p & 0.05) was achieved with the semiflint SM Hetman cultivar (81.23% theoretical value) under the SSF process. A negative correlation (p & 0.05) between starch content and ethanol yield was demonstrated. Chromatographic analysis of the raw spirits showed that lower levels of fermentation by-products were detected for the SSF method than for SHF.
机译:玉米(Zea Mays L.)是生产生物乙醇中的广泛使用的原料。创造新的品种和应用适当的发酵技术,以提高生产效率对生物乙醇生产者来说仍然很重要。这里提出的研究的目的是评估玉米品种和发酵方法的差异之间的相关性,鉴于生物乙醇生产的效率。五种选定的品种由粮农组织(食品和农业组织)数量,杂交品种类型和谷物类型不同。测试样品通常显示出淀粉含量的显着(P& 0.05)差异。使用单独的水解和发酵(SHF)研究了乙醇发酵,以及同时糖化和发酵(SSF)方法,SSF方法证明了生物乙醇的生产最有效,无论品种。在SSF过程下,通过半印度SM Hetman品种(81.23%理论值)实现了最大的乙醇产量(P& 0.05)。证明了淀粉含量和乙醇产率之间的负相关(P& 0.05)。基础烈酒的色谱分析表明,对于SSF方法,检测到较低水平的发酵副产物而不是SHF。

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