Biotechnology Group, Chemical Engineering Faculty, Tarbiat Modares University, Tehran, Iran.
Prep Biochem Biotechnol. 2013;43(5):415-30. doi: 10.1080/10826068.2012.741642.
Bioethanol production from carob pods has attracted many researchers due to its high sugar content. Both Zymomonas mobilis and Saccharomyces cerevisiae have been used previously for this purpose in submerged and solid-state fermentation. Since extraction of sugars from the carob pod particles is a costly process, solid-state and solid submerged fermentations, which do not require the sugar extraction step, may be economical processes for bioethanol production. The aim of this study is to evaluate the bioethanol production in solid submerged fermentation from carob pods. The maximum ethanol production of 0.42 g g(-1) initial sugar was obtained for Z. mobilis at 30°C, initial pH 5.3, and inoculum size of 5% v/v, 9 g carob powder per 50 mL of culture media, agitation rate 0 rpm, and fermentation time of 40 hr. The maximum ethanol production for S. cerevisiae was 0.40 g g(-1) initial sugar under the same condition. The results obtained in this research are comparable to those of Z. mobilis and S. cerevisiae performance in other culture mediums from various agricultural sources. Accordingly, solid submerged fermentation has a potential to be an economical process for bioethanol production from carob pods.
由于角豆荚含糖量高,因此利用其生产生物乙醇引起了众多研究人员的关注。过去,人们曾在分批式和固态发酵中使用运动发酵单胞菌(Zymomonas mobilis)和酿酒酵母(Saccharomyces cerevisiae)来实现这一目标。由于从角豆荚颗粒中提取糖是一个昂贵的过程,因此不需要提取糖这一步骤的固态和固态分批发酵可能是生物乙醇生产的经济工艺。本研究旨在评估从角豆荚进行固态分批发酵生产生物乙醇。在 30°C、初始 pH 值 5.3、接种量为 5%v/v、每 50 毫升培养基使用 9 克角豆粉、搅拌速度为 0 rpm 和发酵时间为 40 小时的条件下,运动发酵单胞菌可获得 0.42 g g(-1)初始糖的最大乙醇产量。在相同条件下,酿酒酵母的最大乙醇产量为 0.40 g g(-1)初始糖。本研究获得的结果可与运动发酵单胞菌和酿酒酵母在其他各种农业来源的培养基中的性能相媲美。因此,固态分批发酵有可能成为从角豆荚生产生物乙醇的经济工艺。