Pérez-Maqueda L A, Criado J M, Sanchez-Jiménez P E
Instituto de Ciencia de Materiales de Sevilla, C.S.I.C.-Universidad de Sevilla, C. Americo Vespucio no 49, 41092 Sevilla, Spain.
J Phys Chem A. 2006 Nov 16;110(45):12456-62. doi: 10.1021/jp064792g.
The combined kinetic analysis implies a simultaneous analysis of experimental data representative of the forward solid-state reaction obtained under any experimental conditions. The analysis is based on the fact that when a solid-state reaction is described by a single activation energy, preexponetial factor and kinetic model, every experimental T-alpha-dalpha/dt triplet should fit the general differential equation independently of the experimental conditions used for recording such a triplet. Thus, only the correct kinetic model would fit all of the experimental data yielding a unique activation energy and preexponential factor. Nevertheless, a limitation of the method should be considered; thus, the proposed solid-state kinetic models have been derived by supposing ideal conditions, such as unique particle size and morphology. In real systems, deviations from such ideal conditions are expected, and therefore, experimental data might deviate from ideal equations. In this paper, we propose a modification in the combined kinetic analysis by using an empirical equation that fits every f(alpha) of the ideal kinetic models most extensively used in the literature and even their deviations produced by particle size distributions or heterogeneities in particle morphologies. The procedure here proposed allows the combined kinetic analysis of data obtained under any experimental conditions without any previous assumption about the kinetic model followed by the reaction. The procedure has been verified with simulated and experimental data.
联合动力学分析意味着对在任何实验条件下获得的代表正向固态反应的实验数据进行同步分析。该分析基于这样一个事实,即当固态反应由单一活化能、指前因子和动力学模型描述时,每个实验的T-α-dα/dt三元组应独立于用于记录该三元组的实验条件而符合一般微分方程。因此,只有正确的动力学模型才能拟合所有实验数据,得出唯一的活化能和指前因子。然而,应考虑该方法的一个局限性;因此,所提出的固态动力学模型是通过假设理想条件(如单一粒径和形态)推导出来的。在实际系统中,预计会偏离这些理想条件,因此,实验数据可能会偏离理想方程。在本文中,我们提出了对联合动力学分析的一种改进,即使用一个经验方程,该方程能最广泛地拟合文献中最常用的理想动力学模型的每个f(α),甚至能拟合由粒径分布或颗粒形态不均匀性产生的偏差。这里提出的程序允许对在任何实验条件下获得的数据进行联合动力学分析,而无需对反应遵循的动力学模型进行任何预先假设。该程序已通过模拟和实验数据得到验证。