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EFFECT OF PARTICLE SIZE OF AP AND CATALYST ON THE THERMAL DECOMPOSITION OF AMMONIUM PERCHLORATE

机译:AP和催化剂的粒径对高氯酸铵热分解的影响

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Analytical investigations on thermal decomposition behavior of course, fine and ultrafine ammonium perchlorate (AP) with and without catalyst were carried out by thermogravimelric and by differential thermal analysis.The low temperature decomposition (LTD) and high temperature decomposition (HTD) reactions and kinetic parameters for the two stages were computed using three non-mechanistic kinetic equations. With decrease in particle size of AP, the percentage mass loss in LTD decreases, but the overall reactivity increases. The variation of both activation energy (E) and pre-exponential factor (A) with particle size and catalyst impose difficulty in correlating the calculated E values with the observed enhancement in reaction rate due to decrease of particle size and catalyst. The E values calculated after normalizing the A values by kinetic compensation correction follows the expected trends. The catalytic activity of copper chromite was found higher than iron oxide in all fractions of AP decomposition behaviour.
机译:当然,通过热重弹法和差热分析对含或不含催化剂的细高氯酸铵和超细高氯酸铵(AP)的热分解行为进行了分析研究。低温分解(LTD)和高温分解(HTD)反应和动力学参数使用三个非机械动力学方程式计算了两个阶段的能量。随着AP粒径的减小,LTD中的质量损失百分比降低,但总反应性增加。活化能(E)和前指数因子(A)随粒径和催化剂的变化,由于粒径和催化剂的减少,很难将计算出的E值与观察到的反应速率提高相关联。通过动态补偿校正将A值归一化之后计算出的E值遵循预期趋势。发现在AP分解行为的所有部分中,亚铬酸铜的催化活性均高于氧化铁。

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