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耐溶剂混合微生物培养物对高浓度异丙醇生物降解的动力学分析

Kinetic analysis of high-concentration isopropanol biodegradation by a solvent-tolerant mixed microbial culture.

作者信息

Bustard Mark T, Meeyoo Vissanu, Wright Phillip C

机构信息

Biochemical Engineering and Environmental Technologies Group, Department of Mechanical and Chemical Engineering, Heriot-Watt University, Edinburgh EH14 4AS, UK.

出版信息

Biotechnol Bioeng. 2002 Jun 20;78(6):708-13. doi: 10.1002/bit.10246.

Abstract

The ability of a previously enriched microbial population to utilize isopropanol (IPA) as the sole carbon source within a minimal salts medium is studied. The advantage of prior enrichment procedures for the improvement of IPA biodegradation performance is demonstrated for an IPA concentration of up to 24 g L(-1). Results showing the interrelationship between temperature and substrate utilization and inhibition levels at temperatures of between 2 degrees C and 45 degrees C are examined. Models of inhibition based on enzyme kinetics are assessed via nonlinear analysis, in order to accurately represent the growth kinetics of this solvent-tolerant mixed culture. The model that best describes the data is the Levenspiel substrate inhibition model, which can predict the maximum substrate level above which growth is completely limited. This is the first report of IPA treatment of up to 24 g L(-1) by an aerobic solvent-tolerant population.

摘要

研究了先前富集的微生物群体在基本盐培养基中以异丙醇(IPA)作为唯一碳源的能力。对于高达24 g L⁻¹的IPA浓度,证明了先前的富集程序对改善IPA生物降解性能的优势。研究了2℃至45℃温度下温度与底物利用及抑制水平之间相互关系的结果。通过非线性分析评估基于酶动力学的抑制模型,以便准确描述这种耐溶剂混合培养物的生长动力学。最能描述数据的模型是Levenspiel底物抑制模型,该模型可以预测生长完全受限的最大底物水平。这是关于需氧耐溶剂群体处理高达24 g L⁻¹ IPA的首次报道。

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