A new approach to evaluate kinetic parameters and mass transfer coefficients in continuous stirred tank reactors. Application to antibiotic separation

Sunil Nath, Vivek Shukla
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引用次数: 3

Abstract

A new method is proposed to evaluate kinetic parameters and mass transfer coefficients for adsorption processes carried out in continuous stirred tank reactors. This method, employing a biphasic model, does not linearize nonlinear solute concentration versus time data, nor does it assume the existence of equilibrium in a typical nonequilibrium situation as is currently done. For a nonlinear adsorption isotherm, the coupled differential equations need to be solved numerically, but using an elegant analytical solution it is possible to determine rate constants and mass transfer coefficients in the case of nonlinear kinetics with a linear adsorption isotherm. This solution (biphasic model, linear isotherm) is obtained and compared with solutions incorporating (i) a linear model (linear isotherm) and (ii) a numerical solution (nonlinear isotherm) for recovery of the antibiotic novobicoin in stirred tank reactors. For novobiocin adsorption versus time data, use of the biphasic model results in a lower mean percentage error than either the linear model or the numerical simulation; further, it provides a far superior fit of short-time adsorption behavior. Hence, we strongly advocate that the biphasic model be routinely employed along with linear models and numerical simulations of Langmuir/Freundlich isotherms for interpretation of adsorption data.

一种评估连续搅拌槽式反应器动力学参数和传质系数的新方法。抗生素分离的应用
提出了一种评价连续搅拌槽式反应器中吸附过程动力学参数和传质系数的新方法。该方法采用双相模型,不将非线性溶质浓度随时间数据线性化,也不像目前所做的那样,假设在典型的非平衡状态下存在平衡。对于非线性吸附等温线,耦合微分方程需要用数值方法求解,但在线性吸附等温线的非线性动力学情况下,使用优雅的解析解可以确定速率常数和传质系数。得到了该溶液(双相模型,线性等温线),并与混合(i)线性模型(线性等温线)和(ii)数值解(非线性等温线)的溶液进行了比较,用于搅拌槽反应器中抗生素novobicoin的回收。对于新生物素吸附随时间变化的数据,使用双相模型的结果比线性模型或数值模拟的平均百分比误差更低;此外,它提供了一个非常优越的短期吸附行为。因此,我们强烈建议将双相模型与线性模型和Langmuir/Freundlich等温线的数值模拟一起常规使用,以解释吸附数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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