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integrated biorefinery model based on production of furans using open-ended high yield processes

机译:基于不限产高产呋喃生产的综合生物精炼模型

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The biodetoxification pathway for the reduction of the fermentation inhibitor furfural was utilized to produce furfuryl alcohol using both a commercial Bakers' yeast and six other native strains, selected for their high tolerance towards the inhibitory effects of furfural. This study explores the potential of the microbial method as an environmentally-benign alternative to the conventional catalytic hydrogenation process for producing furfuryl alcohol used extensively in industry. The microbial method for furfuryl alcohol production provides the benefit of a homogeneous biochemical conversion, devoid of chemical catalysis, in conjunction with other carbohydrate-based processes (e.g. production of ethanol).'Results showed that the yields of furfuryl alcohol using the laboratory yeast strains exceeded 90% of the theoretical yield at a furfural concentration of 25 g I~(-1), which are comparable to yields obtained using the catalytic process, Furfuryl alcohol yields progressively declined as the furfural concentration was increased up to 65 g l~(-1), where the yields averaged over 37%. Piecing together novel high-yield conversion processes for furfural and furfuryl alcohol, an integrated biorefinery model based on the production of furans has been envisioned. Such a facility bypasses the need for high pressure hydrogenation using copper chromite catalysts and hydrogen and azeotropic distillation of furfural to produce dilute streams of both notable platform chemicals.
机译:用于减少发酵抑制剂糠醛的生物解毒途径被用于利用商业贝克酵母和六种其他天然菌株生产糠醇,这些菌株是由于其对糠醛抑制作用的高耐受性而选择的。这项研究探索了微生物方法作为生产广泛用于工业中的糠醇的常规催化加氢工艺的环境友好替代方法的潜力。微生物生产糠醇的方法与其他基于碳水化合物的工艺(例如乙醇的生产)结合使用,可提供均质的生化转化,无需化学催化的好处。'结果表明,使用实验室酵母菌株可生产糠醇在糠醛浓度为25 g I〜(-1)时超过理论产率的90%,这与使用催化工艺获得的产率相当,随着糠醛浓度增加至65 gl〜(-),糠醇产率逐渐下降1),平均收益率超过37%。将糠醛和糠醇的新型高产转化方法结合在一起,已经构想出基于呋喃生产的综合生物精炼模型。这样的设施无需使用亚铬酸铜催化剂和氢气以及糠醛的共沸蒸馏来生产两种显着的平台化学品的稀物流,从而无需进行高压氢化。

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