Ngian K F, Lin S H, Martin W R
Biotechnol Bioeng. 1977 Dec;19(12):1773-84. doi: 10.1002/bit.260191204.
It is shown that the mass transfer resistance can significantly distort the linearity of the Lineweaver-Burk plot of the kinetic data for a microbial culture which forms aggregates. For small flocs, the linearity of the Lineweaver-Burk plot is largely retained, but a different slope and intercept will be obtained compared with flocs free from mass transfer resistance. For large flocs, the Lineweaver-Burk plot shows pronounced curvature at high limiting substrate concentrations. Hence, if the true intrinsic kinetic parameters are to be extracted from a highly flocculating microbial culture, sufficient agitation has to be provided to remove the effect of mass transfer resistance. If the behavior of the flocculating microbial culture is to be explored, additional values for some physical parameters, such as the effective diffusion coefficient of the substrate in floc, the floc density, and the mean floc radius, are needed.
结果表明,传质阻力会显著扭曲形成聚集体的微生物培养物动力学数据的Lineweaver-Burk图的线性关系。对于小絮体,Lineweaver-Burk图的线性关系在很大程度上得以保留,但与无传质阻力的絮体相比,会得到不同的斜率和截距。对于大絮体,在高极限底物浓度下,Lineweaver-Burk图呈现出明显的曲率。因此,如果要从高度絮凝的微生物培养物中提取真正的本征动力学参数,必须提供足够的搅拌以消除传质阻力的影响。如果要探究絮凝微生物培养物的行为,则需要一些物理参数的额外值,例如底物在絮体中的有效扩散系数、絮体密度和平均絮体半径。