Luong J H
Biotechnology Research Institute National Research Council of Canada Montreal, Quebec, Canada.
Biotechnol Bioeng. 1985 Mar;27(3):280-5. doi: 10.1002/bit.260270311.
The inhibitory effect of ethanol on yeast growth and fermentation has been studied for the strain Saccharomyces cerevisiae ATCC No. 4126 under anaerobic batch conditions. The results obtained reveal that there is no striking difference between the response of growth and ethanol fermentation. Two kinetic models are also proposed to describe the kinetic pattern of ethanol inhibition on the specific rates of growth and ethanol fermentation: microi/micro0 = 1 - (P/Pm)alpha (for growth) nui/nu0 = 1 - (P/P'm)beta (for ethanol production). The maximum allowable ethanol concentration above which cells do not grow was predicted to be 112 g/L. The ethanol-producing capability of the cells was completely inhibited at 115 g/L ethanol. The proposed models appear to accurately represent the experimental data obtained in this study and the literature data.
在厌氧分批培养条件下,对酿酒酵母ATCC No. 4126菌株研究了乙醇对酵母生长和发酵的抑制作用。所得结果表明,生长和乙醇发酵的响应之间没有显著差异。还提出了两个动力学模型来描述乙醇对生长比速率和乙醇发酵比速率的抑制动力学模式:microi/micro0 = 1 - (P/Pm)alpha(用于生长),nui/nu0 = 1 - (P/P'm)beta(用于乙醇生产)。预测细胞不生长的最大允许乙醇浓度为112 g/L。在115 g/L乙醇时,细胞的乙醇生产能力被完全抑制。所提出的模型似乎能准确地表示本研究中获得的实验数据以及文献数据。