Thatipamala R, Rohani S, Hill G A
Department of Chemical Engineering, University of Saskatchewan, Saskatoon, Saskatchewan, Canada S7N 0W0.
Biotechnol Bioeng. 1992 Jun 20;40(2):289-97. doi: 10.1002/bit.260400213.
In ethanol fermentation, instantaneous biomass yield of the yeast Saccharmoyces cerevisiae was found to decrease (from 0.156 to 0.026) with increase in ethanol concentration (from 0 to 107 g/L), indicating a definite relationship between biomass yield and product inhibition. A suitable model was proposed to describe this decrease which incorporates the kinetic parameters of product inhibition rather than pure empirical constants. Substrate inhibition was found to occur when substrate concentration is above 150 g/L. A similar definite relationship was observed between substrate inhibition and instantaneous biomass yield. A simple empirical model is proposed to describe the declines in specIfic growth rate and biomass yield due to substrate inhibition. It is observed that product inhibition does not have any effect on product yield whereas substrate inhibition significantly affects the product yield, reflecting a drop in overall product yield from 0.45 to 0.30 as the initial substrate concentration increases from 150 to 280 g/L. These results are expected to have a significant influence in formulating optimum fermentor design variables and in developing an effective control strategy for optimizing ethanol producitivity.
在乙醇发酵过程中,发现酿酒酵母的瞬时生物量产量随着乙醇浓度的增加(从0到107克/升)而降低(从0.156降至0.026),这表明生物量产量与产物抑制之间存在明确的关系。提出了一个合适的模型来描述这种降低,该模型纳入了产物抑制的动力学参数而非单纯的经验常数。当底物浓度高于150克/升时,发现存在底物抑制现象。在底物抑制与瞬时生物量产量之间观察到了类似的明确关系。提出了一个简单的经验模型来描述由于底物抑制导致的比生长速率和生物量产量的下降。据观察,产物抑制对产物产量没有任何影响,而底物抑制显著影响产物产量,这反映出随着初始底物浓度从150克/升增加到280克/升,总产物产量从0.45降至0.30。预计这些结果将对制定最佳发酵罐设计变量以及开发优化乙醇生产率的有效控制策略产生重大影响。