School of Chemical Engineering, Sichuan University, 610065 Chengdu, China.
School of Chemical Engineering, Sichuan University, 610065 Chengdu, China.
Bioresour Technol. 2014 Jun;162:8-13. doi: 10.1016/j.biortech.2014.03.140. Epub 2014 Apr 2.
The secondary metabolites accumulated in a pervaporation membrane bioreactor during ethanol fermentation were mostly composed of acetic acid, lactic acid, propionic acid, citric acid, succinic acid and glycerol. The inhibition effect of these compounds at a broad concentration range was studied through ethanol fermentation by Saccharomyces cerevisiae. An increasing concentration of the secondary metabolites led to longer lag time and a reduction of cell growth. The specific cell growth rate, cell yield, ethanol productivity were only 0.061 h(-1), 0.024, 0.47 g L(-1) h(-1) respectively, when the medium contained 3.12 g of acetic acid, 10.23 g of lactic acid, 2.72 g of propionic acid, 1.35 g of citric acid, 2.26 g of succinic acid and 49.25 g of glycerol per liter (a concentration level in pervaporation membrane bioreactor at later fermentation period). By increasing pH of the medium to 6.0-8.0, the inhibition of these secondary metabolites could be greatly relieved.
在乙醇发酵过程中,渗透汽化膜生物反应器中积累的次生代谢物主要由乙酸、乳酸、丙酸、柠檬酸、琥珀酸和甘油组成。通过酿酒酵母的乙醇发酵研究了这些化合物在较宽浓度范围内的抑制作用。次生代谢物浓度的增加导致迟滞时间延长和细胞生长减少。当培养基中含有 3.12 g 乙酸、10.23 g 乳酸、2.72 g 丙酸、1.35 g 柠檬酸、2.26 g 琥珀酸和 49.25 g 甘油时,比生长速率、细胞产率和乙醇生产效率仅分别为 0.061 h(-1)、0.024 和 0.47 g L(-1) h(-1)(渗透汽化膜生物反应器后期发酵阶段的浓度水平)。通过将培养基的 pH 值提高到 6.0-8.0,可以大大缓解这些次生代谢物的抑制作用。