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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Biodegradation kinetics of benzene, methyl tert-butyl ether, and toluene as a substrate under various substrate concentrations
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Biodegradation kinetics of benzene, methyl tert-butyl ether, and toluene as a substrate under various substrate concentrations

机译:不同底物浓度下苯,甲基叔丁基醚和甲苯作为底物的生物降解动力学

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Owing to the complexity of conventional methods and shortcomings in determining kinetic parameters, a convenient approach using the nonlinear regression analysis of Monod or Haldane type nonlinear equations is presented. This method has been proven to provide accurate estimates of kinetic parameters. The major work in this study consisted of the testing of aromatic compound-degrading cultures in batch experiments for the biodegradation of benzene, methyl tert-butyl ether (MTBE), and toluene. Additionally, batch growth data of three pure cultures (i.e., Pseudomonas aeruginosa YAMT421, Ralstonia sp. YABE411 and Pseudomonas sp. YATO411) isolated from an industrial petrochemical wastewater treatment plant under aerobic conditions were assessed with the nonlinear regression technique and with a trial-and-error procedure to determine the kinetic parameters. The growth rates of MTBE-, benzene-, and toluene-degrading cultures on MTBE, benzene, and toluene were significant. Monod's model was a good fit for MTBE, benzene and toluene at low substrate concentrations. In contrast, Haldane's equation fitted well in substrate inhibition concentration. Monod and Haldane's expressions were found to describe the results of these experiments well, with fitting values higher than 98%. The kinetic parameters, including a maximum specific growth rate (gm), a half-saturation constant (K-s), and an inhibition constant (K-i), were given. (c) 2006 Society of Chemical Industry
机译:由于常规方法的复杂性和动力学参数确定的不足,提出了一种利用Monod或Haldane型非线性方程的非线性回归分析的简便方法。已经证明该方法可以提供动力学参数的准确估计。这项研究的主要工作包括分批实验中测试降解芳香族化合物的培养物,以进行苯,甲基叔丁基醚(MTBE)和甲苯的生物降解。此外,采用非线性回归技术并通过试验评估了在有氧条件下从工业石化废水处理厂分离出的三种纯培养物(即铜绿假单胞菌YAMT421,Ralstonia sp。YABE411和Pseudomonas sp。YATO411)的分批生长数据。误差程序确定动力学参数。降解MTBE,苯和甲苯的培养物在MTBE,苯和甲苯上的生长速率非常高。 Monod的模型非常适合低底物浓度的MTBE,苯和甲苯。相反,霍尔丹方程很适合底物抑制浓度。发现Monod和Haldane的表达式很好地描述了这些实验的结果,拟合值高于98%。给出了动力学参数,包括最大比生长速率(gm),半饱和常数(K-s)和抑制常数(K-i)。 (c)2006年化学工业学会

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