Wang Jianhui, Yang Hongyan, Qi Gaoxaing, Liu Xuecheng, Gao Xu, Shen Yu
National Research Base of Intelligent Manufacturing Service, Chongqing Technology and Business University No. 19 Xuefu Rev., Nan'an District Chongqing 400067 China
College of Environment and Resources, Chongqing Technology and Business University Chongqing 400067 China.
RSC Adv. 2019 Jan 15;9(4):1967-1975. doi: 10.1039/c8ra08678h. eCollection 2019 Jan 14.
The effects of formic acid, acetic acid and levulinic acid on acetone-butanol-ethanol (ABE) fermentation under different pH adjustment conditions were investigated using as the fermentation strain. CaCO supplementation can alleviate the inhibitory effect of formic acid on ABE production. The ABE titers from the medium containing 0.5 g L formic acid with pH adjusted by CaCO and KOH were 11.08 g L and 1.04 g L, which reached 64.8% and 6.3% of the control group, respectively. Compared with CaCO pH adjustment, fermentation results with higher ABE titers and yields were obtained from the medium containing acetic acid or levulinic acid, when the pH was adjusted by KOH. When formic acid, acetic acid, and levulinic acid co-existed in the medium, better fermentation result was achieved by adjusting the pH by CaCO. Moreover, 12.50 g L ABE was obtained from the medium containing 2.0 g L acetic acid, 0.4 g L formic acid, and 1.0 g L levulinic acid as compared to 3.98 g L ABE obtained from the same medium when the pH was adjusted by KOH. CaCO supplementation is a more favorable pH adjustment method for ABE medium preparation from lignocellulosic hydrolysate.
以 作为发酵菌株,研究了甲酸、乙酸和乙酰丙酸在不同pH调节条件下对丙酮-丁醇-乙醇(ABE)发酵的影响。添加碳酸钙可以减轻甲酸对ABE生产的抑制作用。含有0.5 g/L甲酸且pH用碳酸钙和氢氧化钾调节的培养基中ABE滴度分别为11.08 g/L和1.04 g/L,分别达到对照组的64.8%和6.3%。与碳酸钙调节pH相比,当用氢氧化钾调节pH时,含有乙酸或乙酰丙酸的培养基获得了更高的ABE滴度和产量的发酵结果。当培养基中同时存在甲酸、乙酸和乙酰丙酸时,通过碳酸钙调节pH可获得更好的发酵结果。此外,含有2.0 g/L乙酸、0.4 g/L甲酸和1.0 g/L乙酰丙酸的培养基获得了12.50 g/L的ABE,而用氢氧化钾调节pH时,同一培养基获得的ABE为3.98 g/L。添加碳酸钙是从木质纤维素水解物制备ABE培养基更有利的pH调节方法。