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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Cellulosic fuel ethanol: alternative fermentation process designs with wild-type and recombinant Zymomonas mobilis.
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Cellulosic fuel ethanol: alternative fermentation process designs with wild-type and recombinant Zymomonas mobilis.

机译:纤维素燃料乙醇:野生型和重组运动发酵单胞菌的替代发酵工艺设计。

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Iogen (Canada) is a major manufacturer of industrial cellulase and hemicellulase enzymes for the textile, pulp and paper, and poultry feed industries. Iogen has recently constructed a 40 t/d biomass-to-ethanol demonstration plant adjacent to its enzyme production facility. The integration of enzyme and ethanol plants results in significant reduction in production costs and offers an alternative use for the sugars generated during biomass conversion. Iogen has partnered with the University of Toronto to test the fermentation performance characteristics of metabolically engineered Zymomonas mobilis created at the National Renewable Energy Laboratory. This study focused on strain AX101, a xylose- and arabinose-fermenting stable genomic integrant that lacks the selection marker gene for antibiotic resistance. The "Iogen Process" for biomass depolymerization consists of a dilute-sulpfuric acid-catalyzed steam explosion, followed by enzymatic hydrolysis. This work examined two process design options for fermentation, first, continuous cofermentation of C5 and C6 sugars by Zm AX101, and second, separate continuous fermentations of prehydrolysate by Zm AX101 and cellulose hydrolysate by either wildtype Z. mobilis ZM4 or an industrial yeast commonly used in the production of fuel ethanol from corn. Iogen uses a proprietary process for conditioning the prehydrolysate to reduce the level of inhibitory acetic acid to at least 2.5 g/L. The pH was controlled at 5.5 and 5.0 for Zymomonas and yeast fermentations, respectively. Neither 2.5 g/L of acetic acid nor the presence of pentose sugars (C6:C5 = 2:1) appreciably affected the high-performance glucose fermentation of wild-type Z. mobilis ZM4. By contrast, 2.5 g/L of acetic acid significantly reduced the rate of pentose fermentation by strain AX101. For single-stage continuous fermentation of pure sugar synthetic cellulose hydrolysate (60 g/L of glucose), wild-type Zymomonas exhibited a four-fold higher volumetric productivity compared with industrial yeast. Low levels of acetic acid stimulated yeast ethanol productivity. The glucose-to-ethanol conversion efficiency for Zm and yeast was 96 and 84%, respectively.
机译:Iogen(加拿大)是纺织,纸浆和造纸以及家禽饲料行业的工业纤维素酶和半纤维素酶的主要生产商。 Iogen最近在其酶生产设施附近建造了一座40 t / d的生物质制乙醇示范厂。酶和乙醇工厂的整合可显着降低生产成本,并为生物质转化过程中产生的糖提供替代用途。 Iogen与多伦多大学合作,测试了由国家可再生能源实验室创建的经代谢工程改造的运动发酵单胞菌的发酵性能特征。这项研究的重点是菌株AX101,这是一种木糖和阿拉伯糖发酵的稳定基因组整合体,缺少用于抗生素抗性的选择标记基因。用于生物质解聚的“ Iogen工艺”包括稀硫酸催化的蒸汽爆炸,然后进行酶促水解。这项工作研究了两种发酵工艺设计选项,首先是通过Zm AX101连续发酵C5和C6糖,其次是通过野生型Z.mobilis ZM4或常用的工业酵母分离通过Zm AX101进行的预水解和纤维素水解液的连续发酵。用玉米生产燃料乙醇。 Iogen使用专有工艺来调节预水解产物,以将抑制性乙酸的含量降低至至少2.5 g / L。发酵单胞菌和酵母发酵的pH分别控制在5.5和5.0。 2.5 g / L的乙酸或戊糖(C6:C5 = 2:1)的存在均不会明显影响野生型运动发酵单胞菌ZM4的高性能葡萄糖发酵。相比之下,2.5 g / L的乙酸显着降低了AX101菌株的戊糖发酵速率。对于纯糖合成纤维素水解物(60 g / L葡萄糖)的单阶段连续发酵,野生型发酵单胞菌的容积生产率是工业酵母的四倍。低水平的乙酸刺激了酵母乙醇的生产率。 Zm和酵母的葡萄糖到乙醇的转化效率分别为96%和84%。

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