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红球菌P1对苯酚降解的动力学研究。I. 分批培养

Kinetic studies of phenol degradation by Rhodococcus sp. P1. I. Batch cultivation.

作者信息

Straube G, Hensel J, Niedan C, Straube E

机构信息

Technical University Carl Schorlemmer Leuna-Merseburg, Merseburg, GDR.

出版信息

Antonie Van Leeuwenhoek. 1990 Jan;57(1):29-32. doi: 10.1007/BF00400332.

Abstract

Rhodococcus sp. P1 utilizes phenol as the sole carbon and energy source via the beta-ketoadipate pathway. In batch cultivation, concentrations up to 2.8 g.l-1 phenol were degraded. The highest values for the specific growth rate of 0.32 h-1 were obtained at concentrations near 0.25 g.l-1. At higher concentrations, substrate inhibition was observed, characterized by increases in lag phase and decreasing growth rates. A mathematical expression was proposed to fit the kinetic pattern of phenol inhibition on the specific growth rate mu: [formula: see text] Nomenclature: K- Exponent of the inhibition function, Ks- Monod saturation constant, g.l-1, KI- Inhibition constant, g.l-1, S- Substrate concentration in culture broth, g.l-1, So- Initial substrate concentration, g.l-1, Y- Yield constant, g cell dry mass.g substrate-1, mu- Specific growth rate, h-1, mu max- Maximum growth rate, h-1.

摘要

红球菌属P1菌株通过β-酮己二酸途径将苯酚作为唯一的碳源和能源。在分批培养中,高达2.8 g·L⁻¹的苯酚浓度被降解。在接近0.25 g·L⁻¹的浓度下,获得了最高的比生长速率值0.32 h⁻¹。在较高浓度下,观察到底物抑制现象,其特征是延迟期延长和生长速率降低。提出了一个数学表达式来拟合苯酚对比生长速率μ的抑制动力学模式:[公式:见原文] 术语:K - 抑制函数的指数,Ks - 莫诺德饱和常数,g·L⁻¹,KI - 抑制常数,g·L⁻¹,S - 培养液中的底物浓度,g·L⁻¹,So - 初始底物浓度,g·L⁻¹,Y - 产率常数,g细胞干重·g底物⁻¹,μ - 比生长速率,h⁻¹,μmax - 最大生长速率,h⁻¹。

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