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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermokinetic parameters and thermal hazard evaluation for three organic peroxides by DSC and TAM III
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Thermokinetic parameters and thermal hazard evaluation for three organic peroxides by DSC and TAM III

机译:DSC和TAM III对三种有机过氧化物的热动力学参数和热危害评估

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The thermokinetic parameters were investigated for cumene hydroperoxide (CHP), di-tert-butyl peroxide (DTBP), and tert-butyl peroxybenzoate (TBPB) by non-isothermal kinetic model and isothermal kinetic model by differential scanning calorimetry (DSC) and thermal activity monitor III (TAM III), respectively. The objective was to investigate the activation energy (E _a) of CHP, DTBP, and TBPB applied non-isothermal well-known kinetic equation to evaluate the thermokinetic parameters by DSC. We employed TAM III to assess the thermokinetic parameters of three liquid organic peroxides, obtained thermal runaway data, and then used the Arrhenius plot to obtain the E _a of liquid organic peroxides at various isothermal temperatures. In contrast, the results of non-isothermal kinetic algorithm and isothermal kinetic algorithm were acquired from a highly accurate procedure for receiving information on thermal decomposition characteristics and reaction hazard.
机译:通过非等温动力学模型和等温动力学模型通过差示扫描量热法(DSC)和热活性研究了氢过氧化枯烯(CHP),过氧化二叔丁酯(DTBP)和过氧化苯甲酸叔丁酯(TBPB)的热动力学参数。监视器III(TAM III)。目的是研究CHP,DTBP和TBPB的活化能(E _a),应用非等温众所周知的动力学方程,通过DSC评估热动力学参数。我们使用TAM III评估了三种液体有机过氧化物的热动力学参数,获得了热失控数据,然后使用Arrhenius图获得了在各种等温温度下液体有机过氧化物的E_a。相反,非等温动力学算法和等温动力学算法的结果是从高度准确的过程中获得的,该过程用于接收有关热分解特性和反应危害的信息。

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