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Recent advances and future prospects for increased butanol production by acetone-butanol-ethanol fermentation

机译:通过丙酮-丁醇-乙醇发酵提高丁醇产量的最新进展和未来前景

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摘要

Presently, several researchers are increasingly focusing on producing butanol as the next-generation fuel by acetone-butanol-ethanol (ABE) fermentation. Butanol has many superior characteristics compared to other biofuels, such as ethanol. However, its production by ABE fermentation faces the challenges of low productivity and yield because of product inhibition and heterofermentation, respectively, and thereby, high costs. Until date, molecular biological techniques and fermentation engineering methods have been applied for high butanol production. Although glucose remains the substrate of choice since traditional research, it is now necessary to substitute glucose derived from edible starch to other substrates from low-cost feedstock, such as agricultural residue. In addition, ABE-producing clostridia cannot directly produce butanol from lignocelluloses. Therefore, recent research is focusing on pretreatment and enzymatic saccharification of the complex molecules derived from agricultural residue for use as feedstock in butanol production. This article reviews traditional research, including the metabolism patterns and characteristics of ABE-producing clostridia. Furthermore, this article describes developments in ABE fermentation with respect to the establishment of highly efficient butanol production processes, such as batch, fed-batch, and continuous cultures, with the introduction of butanol removal, as well as butanol production from lignocellulosic biomasses or alternative substrates to sugars.RI Hu, Xiaojuan/C-4383-2014
机译:当前,一些研究人员越来越关注通过丙酮-丁醇-乙醇(ABE)发酵生产丁醇作为下一代燃料。与其他生物燃料(例如乙醇)相比,丁醇具有许多优越的特性。然而,由于产物的抑制和异发酵作用,其通过ABE发酵的生产面临着低生产率和低产量的挑战,因此成本较高。迄今为止,分子生物学技术和发酵工程方法已用于高丁醇生产。尽管自传统研究以来,葡萄糖仍然是选择的底物,但现在有必要将可食用淀粉衍生的葡萄糖替代低成本原料(如农业残留物)中的其他底物。另外,产生ABE的梭菌不能直接从木质纤维素产生丁醇。因此,最近的研究集中在对农业残渣衍生的复杂分子进行预处理和酶促糖化,以用作丁醇生产的原料。本文回顾了传统研究,包括产生ABE的梭菌的代谢模式和特征。此外,本文介绍了在建立高效丁醇生产工艺(例如分批,补料分批和连续培养),引入丁醇去除以及从木质纤维素生物质或替代品生产丁醇方面,ABE发酵的进展。糖的底物。胡小娟/ C-4383-2014

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