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Thermal decomposition of solid benzoyl peroxide using Advanced Reactive System Screening Tool: Effect of concentration, confinement and selected acids and bases

机译:采用先进的反应性系统筛选工具热分解固体苯甲酰基过氧化氧化物:浓度,限制和选择的酸和碱的影响

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摘要

Benzoyl peroxide (BPO) is one of the most commonly used industrial organic peroxides; however, thermal decomposition of BPO is self-accelerating and can cause fires and explosions; therefore, thermal behavior of BPO decomposition needs to be understood clearly. In this paper, the experimental study of thermal decomposition of solid benzoyl peroxide (BPO) was conducted using the Advanced Reactive System Screening Tool (ARSST). The "onset" temperatures of 75% BPO and 98% BPO were determined to be 98 degrees C and 79 degrees C. The confinement tests showed that adding initial pressure can decrease the "onset" temperature, as well as increase the maximum self heating rate, maximum pressure rise rate, and maximum temperature. Isothermal aging tests were conducted to study the effect of induction. A higher isothermal temperature shortened the induction time. The results showed that BPO can decompose at 75 degrees C if held at this temperature for a period of time, and the "onset" temperature in isothermal tests can be much lower than that measured in dynamic screening tests. In addition, effect of selected acids and bases on BPO thermal decomposition were investigated. All the additives had little impact on the BPO decomposition reaction under the tested conditions. Further experiments are needed to investigate the thermal hazards of mixtures. Our research is the first in the literature to study BPO decomposition using ARSST and the results provide useful information to characterize hazardous decomposition, and design safe measures during drying, storage, and transportation of BPO.
机译:苯甲酰基过氧化物(BPO)是最常用的工业有机物过氧化物之一;然而,BPO的热分解是自我加速的,可以引起火灾和爆炸;因此,需要清楚地理解BPO分解的热行为。本文采用先进的反应性系统筛选工具(ARSST)进行了固体苯甲酰过氧化物(BPO)的热分解的实验研究。 75%BPO和98%BPO的“发病”温度测定为98℃和79℃。监禁试验表明,增加初始压力可以降低“发病”温度,以及增加最大自加热速率,最大压力上升率和最高温度。进行等温老化试验以研究诱导的影响。等温温度较高缩短了诱导时间。结果表明,如果在该温度下保持一段时间,BPO可以在75摄氏度下分解,并且等温测试中的“发病”温度可以低于动态筛选试验中测量的“发作”温度。此外,研究了所选酸和碱对BPO热分解的影响。所有添加剂对测试条件下的BPO分解反应几乎没有影响。需要进一步的实验来研究混合物的热危害。我们的研究是使用ARSST研究BPO分解的文献中的第一个,结果提供了有用的信息,以表征危险的分解,以及在BPO的干燥,储存和运输过程中设计安全措施。

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