首页> 外文期刊>Journal of Thermal Analysis and Calorimetry >Prediction of thermal hazard of liquid organic peroxides by non-isothermal and isothermal kinetic model of DSC tests
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Prediction of thermal hazard of liquid organic peroxides by non-isothermal and isothermal kinetic model of DSC tests

机译:用DSC试验的非等温和等温动力学模型预测液态有机过氧化物的热危害

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Liquid organic peroxides (LOPs) have been widely used as initiators of polymerization, hardening, or cross-linking agents. We evaluated a beneficial kinetic model to acquire accurate thermokinetic parameters to help preventing runaway reactions, fires or explosions in the process environment. Differential scanning calorimetry was used to assess the kinetic parameters, such as kinetic model, reaction order, heat of reaction (ΔH d), activation energy (E a), frequency factor (lnk 0), etc. The non-isothermal and isothermal kinetic models were compared to determine the validity of the kinetic model, and then applied to the thermal hazard assessment of commercial package contaminated with LOPs. Simulations of a 0.5-L Dewar vessel and 25-kg commercial package were performed. We focused on the thermal stability of different liquid system properties for LOPs. From the results, the optimal conditions were determined for avoiding violent heat effects that can cause a runaway reaction in storage, transportation, and manufacturing.
机译:液态有机过氧化物(LOP)已被广泛用作聚合,硬化或交联剂的引发剂。我们评估了一个有益的动力学模型,以获取准确的热动力学参数,以帮助防止过程环境中的失控反应,火灾或爆炸。用差示扫描量热法测定动力学参数,包括动力学模型,反应顺序,反应热(ΔHd ),活化能(E a ),频率因子(lnk 0

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