College of Environmental and Chemical Engineering, Dalian University, Dalian 116622, PR China.
Key Laboratory of Microbial Resources (Ministry of Agriculture, China), Institute of Agricultural Resources and Regional Planning, CAAS, Beijing 100081, PR China.
Bioresour Technol. 2016 Mar;203:295-302. doi: 10.1016/j.biortech.2015.12.054. Epub 2015 Dec 23.
The aim of present study was to develop a process for open ethanol fermentation from food waste using an acid-tolerant mutant of Zymomonas mobilis (ZMA7-2). The mutant showed strong tolerance to acid condition of food waste hydrolysate and high ethanol production performance. By optimizing fermentation parameters, ethanol fermentation with initial glucose concentration of 200 g/L, pH value around 4.0, inoculum size of 10% and without nutrient addition was considered as best conditions. Moreover, the potential of bench scales fermentation and cell reusability was also examined. The fermentation in bench scales (44 h) was faster than flask scale (48 h), and the maximum ethanol concentration and ethanol yield (99.78 g/L, 0.50 g/g) higher than that of flask scale (98.31 g/L, 0.49 g/g). In addition, the stable cell growth and ethanol production profile in five cycles successive fermentation was observed, indicating the mutant was suitable for industrial ethanol production.
本研究旨在利用耐酸突变株 Zymomonas mobilis(ZMA7-2)从食物垃圾中开发开放式乙醇发酵工艺。该突变株对食物垃圾水解液的酸性条件具有很强的耐受性和较高的乙醇生产性能。通过优化发酵参数,当初始葡萄糖浓度为 200 g/L、pH 值约为 4.0、接种量为 10%且不添加营养物质时,乙醇发酵被认为是最佳条件。此外,还考察了中试规模发酵和细胞重复使用的潜力。中试规模(44 h)的发酵速度快于摇瓶规模(48 h),最大乙醇浓度和乙醇产率(99.78 g/L,0.50 g/g)高于摇瓶规模(98.31 g/L,0.49 g/g)。此外,在连续五次发酵中观察到稳定的细胞生长和乙醇生产曲线,表明突变株适合工业乙醇生产。