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首页> 外文期刊>Journal of Biotechnology & Biomaterials >Growth Kinetics of Acclimated Mixed Culture for Degradation of Isopropyl Alcohol (IPA)
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Growth Kinetics of Acclimated Mixed Culture for Degradation of Isopropyl Alcohol (IPA)

机译:适应性混合培养降解异丙醇(IPA)的生长动力学

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摘要

Iso-propyl alcohol (IPA) is an organic chemical regarded as a potential pollutant. The permissible exposure limit (PEL) of IPA specified by Occupational Safety and Health Administration (OSHA) is 400 mg L-1. In this study the aerobic biodegradation of IPA is carried out by an acclimated mixed culture obtained by sewage treatment plant, for the range of 200-700 mg L-1 of initial IPA concentration. The batch degradation study demonstrated that the maximum growth rate obtainable is 0.337 h-1. To explain the inhibition effects, different kinetic growth models such as Haldane, Luong and Edward models are applied. The experimental data are found to fit well with inhibition models having the values of coefficient of determination (R2) of 0.989, 0.986 and 0.984 respectively for Haldane, Luong and Edward models. Based on the disappearance of IPA, degradation is modeled by the three-half-order kinetics and the resulting kinetic parameters are reported.
机译:异丙醇(IPA)是被视为潜在污染物的有机化学物质。美国职业安全与健康管理局(OSHA)规定的IPA允许暴露极限(PEL)为400 mg L-1。在这项研究中,IPA的需氧生物降解是通过污水处理厂获得的适应性混合培养物进行的,初始IPA浓度为200-700 mg L-1。分批降解研究表明,可获得的最大生长速率为0.337 h-1。为了解释抑制作用,使用了不同的动力学增长模型,例如Haldane,Luong和Edward模型。实验数据与Haldane,Luong和Edward模型的测定系数(R2)分别为0.989、0.986和0.984的抑制模型非常吻合。基于IPA的消失,降解过程通过三阶动力学模型进行建模,并报告了所得的动力学参数。

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