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Thermogravimetric Analysis of Rubber Glove Pyrolysis by Different Iso-conversional Methods

机译:不同等转化法对橡胶手套热解的热重分析

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摘要

Pyrolysis kinetics of rubber glove with the heating rates (β) of 5, 10, 20 and 40 ℃ min~(-1) were investigated by thermogravimetric analyzer from 100 to 1000 ℃ in nitrogen atmosphere. The results indicate that, during pyrolysis processes of rubber glove the peak of differential themogravimetry curves move toward higher temperature with the increase of heating rate and the change of temperature is approximately 40 ℃ from 5 to 40 ℃ min~(-1). Meanwhile, three iso-conversional methods (Kissinger's method, Doyle's approximation and Flynn-Wall-Ozawa method) are used for analysing the non-isothermal pyrolysis kinetic of rubber glove. It is found that the difference of the apparent activation energies obtained by the three iso-conversional methods is no more than 21 kJ mol~(-1) and the overall trends are very similar. The range of apparent activation energies for rubber glove pyrolysis is between 103.88 and 184.33 kJ mol~(-1).
机译:用热重分析仪在氮气气氛下,用热重分析仪研究了加热速率(β)分别为5、10、20和40℃min〜(-1)时的橡胶手套的热解动力学。结果表明,在橡胶手套的热解过程中,随着加热速率的增加,差示热重曲线的峰值向较高温度方向移动,在5〜40℃min〜(-1)范围内温度变化约为40℃。同时,采用三种等温转化方法(Kissinger方法,Doyle近似和Flynn-Wall-Ozawa方法)来分析橡胶手套的非等温热解动力学。结果表明,三种等转化法得到的表观活化能相差不超过21 kJ mol〜(-1),总体趋势非常相似。橡胶手套热解的表观活化能范围为103.88至184.33 kJ mol〜(-1)。

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