Department of Chemical and Biological Engineering, Korea University, 1, Anam-Dong, Seongbuk-Gu, Seoul, 136-701, Republic of Korea.
Bioprocess Biosyst Eng. 2012 Jan;35(1-2):85-92. doi: 10.1007/s00449-011-0607-y. Epub 2011 Sep 11.
In this study, ethanol production from pure and crude glycerol using Enterobacter aerogenes ATCC 29007 was evaluated under anaerobic culture conditions. Inhibitory effects of substrate concentrations, pH, and salt concentrations were investigated based on crude glycerol components. Ethanol production was performed with pure glycerol concentrations ranging from 5 to 30 g/L to evaluate the effects of substrate concentration and osmotic pressure. The consumed glycerol was 5-14.33 g/L, and the yield of ethanol was higher than 0.75 mol ethanol/mol glycerol after 24 h of cultivation. To evaluate the inhibitory effects of salts (NaCl and KCl), experiments were performed with 0-20 g/L of each salt. Inhibitory effects of salts were strongest at high salt concentrations. The inhibitory effect of pH was performed in the pH range 4-10, and cell growth and ethanol production were highest at pH 5-6. Also, ethanol production was slightly inhibited at low concentration of crude glycerol comparison with pure glycerol. However, significant inhibitory effects were not observed at 1.5 and 2% crude glycerol which showed higher ethanol production compared to pure glycerol.
本研究采用厌氧培养条件下的肠杆菌 Aerogenes ATCC 29007 从纯甘油和粗甘油生产乙醇。根据粗甘油的成分,研究了基质浓度、pH 值和盐浓度的抑制作用。通过纯甘油浓度从 5 到 30 g/L 进行乙醇生产,以评估基质浓度和渗透压的影响。培养 24 小时后,消耗的甘油为 5-14.33 g/L,乙醇的产率高于 0.75 mol 乙醇/mol 甘油。为了评估盐(NaCl 和 KCl)的抑制作用,进行了 0-20 g/L 各盐的实验。盐的抑制作用在高盐浓度下最强。在 pH 值 4-10 的范围内进行了 pH 值的抑制作用,在 pH 值 5-6 时细胞生长和乙醇生产最高。此外,与纯甘油相比,在低浓度的粗甘油下,乙醇生产略有抑制。然而,在 1.5%和 2%的粗甘油下没有观察到显著的抑制作用,其乙醇产量高于纯甘油。