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Physico-Geometrical Kinetics of Solid-State Reactions in an Undergraduate Thermal Analysis Laboratory

机译:本科生热分析实验室中固态反应的物理几何动力学

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An undergraduate kinetic experiment of the thermal decomposition of solids by microscopic observation and thermal analysis was developed by investigating a suitable reaction, applicable techniques of thermal analysis and microscopic observation, and a reliable kinetic calculation method. The thermal decomposition of sodium hydrogen carbonate is selected as the suitable reaction for the student experiments, because its physico-geometrical reaction mechanism is approximately described by the twodimensional phase boundary controlled model, and its reaction kinetics are less sensitive to the measurement conditions of thermal analyses. On the basis of simple microscopic observations of this reaction, development of the physico-geometrical reaction model and derivation of the kinetic model function are imposed on students. The kinetic analysis is also performed using the kinetic rate data recorded by a single thermogravimetric run under modulated temperature conditions. This reduces the time spent in the laboratory and enables the application of a two-step kinetic calculation that provides reliable kinetic results. From the results, students can interpret the kinetics, which are closely related to the physico-geometrical characteristics of the reaction. A one-day undergraduate course in a thermal analysis laboratory is proposed from research and trials conducted in our university.
机译:通过研究合适的反应,适用的热分析和显微镜观察技术以及可靠的动力学计算方法,开发了通过显微镜观察和热分析进行固体热分解的本科动力学实验。选择碳酸氢钠的热分解作为学生实验的合适反应,因为其物理几何反应机理大致由二维相边界控制模型描述,并且其反应动力学对热分析的测量条件较不敏感。在对该反应进行简单的显微镜观察的基础上,对学生进行了物理-几何反应模型的开发和动力学模型功能的推导。还使用在调制温度条件下单次热重分析记录的动力学速率数据进行动力学分析。这样可以减少在实验室中花费的时间,并可以进行两步动力学计算,从而提供可靠的动力学结果。从结果中,学生可以解释动力学,该动力学与反应的物理几何特征密切相关。通过在我们大学进行的研究和试验,提出了在热分析实验室中进行为期一天的本科课程。

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