Center for Energy, Indian Institute of Technology Guwahati, Guwahati, Assam, India.
Prep Biochem Biotechnol. 2013;43(8):828-47. doi: 10.1080/10826068.2013.805625.
This article addresses the issue of effect of fermentation parameters for conversion of glycerol (in both pure and crude form) into three value-added products, namely, ethanol, butanol, and 1,3-propanediol (1,3-PDO), by immobilized Clostridium pasteurianum and thereby addresses the statistical optimization of this process. The analysis of effect of different process parameters such as agitation rate, fermentation temperature, medium pH, and initial glycerol concentration indicated that medium pH was the most critical factor for total alcohols production in case of pure glycerol as fermentation substrate. On the other hand, initial glycerol concentration was the most significant factor for fermentation with crude glycerol. An interesting observation was that the optimized set of fermentation parameters was found to be independent of the type of glycerol (either pure or crude) used. At optimum conditions of agitation rate (200 rpm), initial glycerol concentration (25 g/L), fermentation temperature (30°C), and medium pH (7.0), the total alcohols production was almost equal in anaerobic shake flasks and 2-L bioreactor. This essentially means that at optimum process parameters, the scale of operation does not affect the output of the process. The immobilized cells could be reused for multiple cycles for both pure and crude glycerol fermentation.
本文探讨了固定化巴氏梭菌转化甘油(纯甘油和粗甘油)为三种高附加值产品,即乙醇、丁醇和 1,3-丙二醇(1,3-PDO)的发酵参数对产物得率的影响,从而实现了该过程的统计学优化。分析不同工艺参数(搅拌速度、发酵温度、培养基 pH 值和初始甘油浓度)的影响表明,对于纯甘油作为发酵基质,培养基 pH 值是总醇产量的最关键因素。另一方面,对于粗甘油发酵,初始甘油浓度是最重要的因素。一个有趣的观察结果是,优化的发酵参数集与所用甘油的类型(纯甘油或粗甘油)无关。在最佳搅拌速度(200rpm)、初始甘油浓度(25g/L)、发酵温度(30°C)和培养基 pH 值(7.0)条件下,厌氧摇瓶和 2-L 生物反应器中的总醇产量几乎相等。这意味着在最佳工艺参数下,操作规模不会影响工艺的输出。固定化细胞可重复用于纯甘油和粗甘油发酵的多个循环。