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Current state-of-the-art in ethanol production from lignocellulosic feedstocks

机译:目前从木质纤维素原料生产的乙醇生产中的最先进

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The renewable lignocellulosic biomass is a sustainable feedstock for the production of bioethanol, which shows the potential to replace fossil fuels. Due to the recalcitrant structure of plant cell wall made of cellulose, hemicellulose, and lignin, the biomass conversion process requires the use of efficient pretreatment process before enzymatic hydrolysis and fermentation to degrade the crystallinity of cellulose fibres and to remove lignin from biomass. Proper pretreatment techniques, economical production of cellulolytic enzymes, and effective fermentation of glucose and xylose in the presence of inhibitors are key challenges for the viable production of bioethanol. Although new strains capable of fermenting xylose are being designed, they are often not resistant to toxic compounds in hydrolysates. This paper provides an in-depth review of lignocellulosic bioethanol production via biochemical route, focusing on the most widely used pretreatment technologies and key operational conditions of enzymatic hydrolysis and fermentation considering sugar/ethanol yields. In addition, this review examines the relevant detoxification strategies for the removal of toxic substances and the importance of immobilization. The review also indicates potential usage of engineered microorganisms to improve glucose and xylose fermentation, cellulolytic enzymes production, and response to stress conditions.
机译:可再生的木质纤维素生物量是用于生产生物乙醇的可持续原料,其显示出替代化石燃料的潜力。由于植物细胞壁的醋酸纤维素,半纤维素和木质素制成,生物质转化过程需要在酶水解和发酵之前使用有效的预处理方法,以降解纤维素纤维的结晶度并从生物质中除去木质素。适当的预处理技术,纤维素分解酶的经济生产,以及在抑制剂存在下,葡萄糖和木糖的有效发酵是生物乙醇的可行生产的关键挑战。尽管设计了能够发酵木糖的新菌株,但它们通常不抵抗水解产物中的有毒化合物。本文通过生化途径对木质纤维素生物乙醇生产进行了深入的综述,重点是考虑糖/乙醇产量的酶水解和发酵的最广泛使用的预处理技术和关键操作条件。此外,本综述审查了用于去除有毒物质的相关解毒策略以及固定的重要性。审查还表明,工程化微生物的潜在使用,以改善葡萄糖和木糖发酵,纤维素分解酶产生和对应激条件的反应。

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