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Improved Experimental and Computational Methodology for Determining the Kinetic Equation and the Extant Kinetic Constants of Fe(II) Oxidation by Acidithiobacillus ferrooxidans

机译:确定酸性铁硫杆菌氧化Fe(II)的动力学方程和存在的动力学常数的改进的实验和计算方法

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摘要

The variety of kinetics expressions encountered in the literature and the unreasonably broad range of values reported for the kinetics constants of Acidithiobacillus ferrooxidans underscore the need for a unifying experimental procedure and for the development of a reliable kinetics equation. Following an extensive and critical review of reported experimental techniques, a method based on batch pH-controlled kinetics experiments lasting less than one doubling time was developed for the determination of extant kinetics constants. The Fe(II) concentration in the experiments was measured by a method insensitive to Fe(III) interference. Kinetics parameters were determined by nonlinear fitting of the integrated form of the Monod equation to yield a KS of 31 ± 4 mg Fe2+ liter−1 (mean ± standard deviation), a KP of 139 ± 20 mg Fe3+ liter−1, and a μmax of 0.082 ± 0.002 h−1. The corresponding kinetics equation was as follows: where S represents the Fe(II) concentration in mg liter−1, P0 represents the initial Fe(III) concentration in mg liter−1, X represents the suspended bacterial cell concentration in cells ml−1, and t represents time in hours. The measured data fit this equation exceptionally well, with an R2 of >0.99. Fe(III) inhibition was found to be of a competitive nature. Contrary to previous reports, the results show that the concentration of Acidithiobacillus ferrooxidans cells has no affect on the kinetics constants. The kinetics equation can be considered applicable only to A. ferrooxidans cells grown under environmental conditions similar to those of the inoculum tested in the study. In contrast, the experimental and computational procedure is completely general and can be applied to A. ferrooxidans irrespective of the culture history.
机译:文献中遇到的各种动力学表达以及所报道的酸性氧化亚铁硫杆菌的动力学常数的不合理的宽范围值强调了对统一实验程序和可靠的动力学方程式发展的需求。在对已报道的实验技术进行广泛而严格的审查后,开发了一种基于批次pH控制动力学实验的方法,该实验持续时间少于一倍,用于确定现有的动力学常数。通过对Fe(III)干扰不敏感的方法测量实验中的Fe(II)浓度。通过对Monod方程的积分形式进行非线性拟合确定动力学参数,以得出KS为31±4 mg Fe 2 + -1 (均值±标准偏差) ,KP为139±20 mg Fe 3 + -1 ,μmax为0.082±0.002 h -1 。相应的动力学方程如下:其中S表示以mg升 -1 表示的Fe(II)浓度,P0表示以mg升 -1 ,X代表悬浮在细胞ml -1 中的细菌细胞浓度,t代表以小时为单位的时间。实测数据非常适合该方程,R 2

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