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Aims and methods in non-isothermal reaction kinetics

机译:非等温反应动力学的目的和方法

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The majority of the works dealing with non-isothermal kinetics assumes only one kinetic differential equation, uses linearization techniques and do not check the fit between the simulated and the experimental data. It is not clear from the literature why we need kinetic evaluations at all in this field. Due to this controversial situation, the author has outlined his views on the aims and methods of the non-isothermal kinetics in this paper. Accordingly, the goal of the kinetic evaluation is to obtain better, more informative results from the experiments. If realistic models are used, numerous unknown parameters have to be determined during the evaluation. Since the most important errors of thermal analysis are not random, the laws of the mathematical statistics do not offer means to find the best set of model parameters. Nevertheless, the simultaneous evaluation of a series of thermoanalytical experiments by the method of least squares aims directly at the description of the sample behavior in a wide range of experimental conditions and helps the determination of a large number of unknown parameters. The outlined considerations are supported by examples from the work of the author and coworkers. As a comparison, a statistical survey is given on those papers that were published in journals specialized for thermal analysis, thermochemistry and pyrolysis in 2006 and contained the term "kinetic" or "kinetics" in their titles.
机译:涉及非等温动力学的大多数工作都仅假设一个动力学微分方程,使用线性化技术,并且不检查模拟数据与实验数据之间的拟合度。从文献中尚不清楚为什么在这个领域中我们根本需要动力学评估。由于这种有争议的情况,作者概述了他对非等温动力学的目的和方法的看法。因此,动力学评估的目的是从实验中获得更好,更有用的结果。如果使用实际模型,则在评估期间必须确定许多未知参数。由于热分析的最重要误差不是随机的,因此数学统计定律不提供寻找最佳模型参数集的手段。然而,通过最小二乘法同时评估一系列热分析实验的目的是直接描述各种实验条件下的样品行为,并有助于确定大量未知参数。概述的注意事项得到了作者和同事的工作示例的支持。作为比较,对2006年在热分析,热化学和热解专业期刊上发表的那些论文进行了统计调查,这些论文的标题中包含“动力学”或“动力学”。

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