Qureshi Nasib, Li Xin-Liang, Hughes Stephen, Saha Badal C, Cotta Michael A
Fermentation Biotechnology and Bioproducts and Biocatalysis, United States Department of Agriculture, Agricultural Research Service (ARS), National Center for Agricultural Utilization Research (NCAUR), Peoria, Illinois 61604, USA.
Biotechnol Prog. 2006 May-Jun;22(3):673-80. doi: 10.1021/bp050360w.
Acetone, butanol, and ethanol (ABE) were produced from corn fiber arabinoxylan (CFAX) and CFAX sugars (glucose, xylose, galactose, and arabinose) using Clostridium acetobutylicum P260. In mixed sugar (glucose, xylose, galactose, and arabinose) fermentation, the culture preferred glucose and arabinose over galactose and xylose. Under the experimental conditions, CFAX (60 g/L) was not fermented until either 5 g/L xylose or glucose plus xylanase enzyme were added to support initial growth and fermentation. In this system, C. acetobutylicum produced 9.60 g/L ABE from CFAX and xylose. This experiment resulted in a yield and productivity of 0.41 and 0.20 g/L x h, respectively. In the integrated hydrolysis, fermentation, and recovery process, 60 g/L CFAX and 5 g/L xylose produced 24.67 g/L ABE and resulted in a higher yield (0.44) and a higher productivity (0.47 g/L x h). CFAX was hydrolyzed by xylan-hydrolyzing enzymes, and ABE were recovered by gas stripping. This investigation demonstrated that integration of hydrolysis of CFAX, fermentation to ABE, and recovery of ABE in a single system is an economically attractive process. It is suggested that the culture be further developed to hydrolyze CFAX and utilize all xylan sugars simultaneously. This would further increase productivity of the reactor.
使用丙酮丁醇梭菌P260从玉米纤维阿拉伯木聚糖(CFAX)和CFAX糖(葡萄糖、木糖、半乳糖和阿拉伯糖)中生产丙酮、丁醇和乙醇(ABE)。在混合糖(葡萄糖、木糖、半乳糖和阿拉伯糖)发酵过程中,培养物优先利用葡萄糖和阿拉伯糖而非半乳糖和木糖。在实验条件下,直到添加5 g/L木糖或葡萄糖加木聚糖酶以支持初始生长和发酵,60 g/L的CFAX才会被发酵。在该系统中,丙酮丁醇梭菌从CFAX和木糖中生产出9.60 g/L的ABE。该实验的产率和生产率分别为0.41 g/L和0.20 g/(L·h)。在水解、发酵和回收一体化过程中,60 g/L的CFAX和5 g/L的木糖产生了24.67 g/L的ABE,产率(0.44)和生产率(0.47 g/(L·h))更高。CFAX通过木聚糖水解酶进行水解,ABE通过气提进行回收。该研究表明,在单一系统中整合CFAX水解、发酵生成ABE以及ABE回收是一个具有经济吸引力的过程。建议进一步开发培养物以水解CFAX并同时利用所有木聚糖糖。这将进一步提高反应器的生产率。