Kinetic model of thermal decomposition of nitric acid solutions of hydrazine nitrate

IF 3.1 2区 化学 Q2 CHEMISTRY, ANALYTICAL
Vera Kalistratova, Arseniy Obedkov, Elena Belova
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引用次数: 0

Abstract

The kinetic parameters of thermal decomposition of an aqueous solution containing 0.029 mass fractions of hydrazine nitrate and 0.44 mass fractions of nitric acid have been determined: onset temperature and specific thermal effect of exothermic reactions, activation energy, pre-exponential factor, reaction rate and order. Based on the data obtained, a mathematical model of thermal decomposition of nitric acid solutions of hydrazine nitrate has been proposed. It has been found that thermolysis of the solution has a multi-stage nature and can be described by a system of 5 equations of 1st and 2nd order. A comparison of two approaches to creating a mathematical model has been carried out: based on adiabatic calorimetry and differential scanning calorimetry data.
硝酸溶液热分解硝酸肼的动力学模型
确定了含有 0.029 质量分数硝酸肼和 0.44 质量分数硝酸的水溶液热分解的动力学参数:放热反应的起始温度和比热效应、活化能、前指数因子、反应速率和顺序。根据所获得的数据,提出了硝酸肼硝酸溶液热分解的数学模型。研究发现,溶液的热分解具有多级性质,可以用 5 个一阶和二阶方程系统来描述。对建立数学模型的两种方法进行了比较:基于绝热量热法和差示扫描量热法数据。
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来源期刊
Thermochimica Acta
Thermochimica Acta 化学-分析化学
CiteScore
6.50
自引率
8.60%
发文量
210
审稿时长
40 days
期刊介绍: Thermochimica Acta publishes original research contributions covering all aspects of thermoanalytical and calorimetric methods and their application to experimental chemistry, physics, biology and engineering. The journal aims to span the whole range from fundamental research to practical application. The journal focuses on the research that advances physical and analytical science of thermal phenomena. Therefore, the manuscripts are expected to provide important insights into the thermal phenomena studied or to propose significant improvements of analytical or computational techniques employed in thermal studies. Manuscripts that report the results of routine thermal measurements are not suitable for publication in Thermochimica Acta. The journal particularly welcomes papers from newly emerging areas as well as from the traditional strength areas: - New and improved instrumentation and methods - Thermal properties and behavior of materials - Kinetics of thermally stimulated processes
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