玉米秸秆
水解物
制浆造纸工业
生产力
干草
糖
化学
纤维素
碳纤维
碳源
食品科学
生物技术
环境科学
发酵
农学
数学
生物
经济
工程类
生物化学
水解
作物
宏观经济学
复合数
算法
作者
Ge Gao,Zitong Liao,Yiyan Cao,Yibo Zhang,Yan Zhang,Mengmeng Wu,Guoqiang Li,Ting Ma
标识
DOI:10.1016/j.biortech.2021.125781
摘要
Bacterial cellulose (BC) has a huge global market due to its excellent properties and wide range of applications. However, due to high production costs, low productivity, and unsatisfactory scale-up production, industrialisation has been slow. Herein, stabilization of strain, optimisation of culture conditions, and a cheap carbon source were combined to achieve highly efficient, low-cost, large-scale BC production in 20 L containers. Optimisation of culture conditions increased both BC productivity and sugar conversion ratio significantly, from 2.08 g/L/day and 9.78% to 17.13 g/L/day and 70.31%, respectively. Furthermore, BC productivity and sugar conversion ratio reached 13.96 g/L/day and 85.50% using corn stover total hydrolysate as carbon source. The low-cost, facile, and highly efficient process can generate large quantities of BC, and could promote industrialisation of BC production.
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