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过氧化二异丙苯热爆炸危险性研究
引用本文:臧娜.过氧化二异丙苯热爆炸危险性研究[J].科技导报(北京),2010,28(3):37-40.
作者姓名:臧娜
作者单位:中国人民武装警察部队学院消防工程系,河北廊坊 065000
摘    要: 为了预防和减少过氧化二异丙苯(DCP)生产过程发生火灾爆炸事故,利用绝热加速量热仪,对DCP、DCP/20%碳酸钠和DCP/20%苯酚的热危险性进行了实验研究,得到其初始放热温度、最大温升速率、最大温升速率时间等热危险性参数和绝热放热曲线;对3种物质的测试结果进行了绝热校正。利用绝热相容性评价的判据初始放热温度和平均加速度的理论模型,计算DCP/20%碳酸钠和DCP/20%苯酚的相容性。结果表明,DCP、DCP/20%碳酸钠和DCP/20%苯酚的初始放热温度分别为97.47、106.40和115.59℃,最大温升速率分别为65.15、2.15和3.44℃·min-1,平均加速度分别为0.2977、0.0077和0.0127。在实际的工业生产中,所选取的碳酸钠和苯酚催化剂与DCP的相容性都较好,但比较二者发现,选用碳酸钠作为催化剂更为安全。

关 键 词:过氧化二异丙苯    绝热分解    绝热加速量热仪    相容性

Hazard of Thermal Explosive of Dicumyl Peroxide
Abstract:In order to prevent and reduce the fire explosion accidents in the process of manufacturing Dicumyl Peroxide (DCP), the thermal hazard of DCP, DCP/20% sodium carbonate and DCP/20% phenol are studied by the Accelerating Rate Calorimeter(ARC) under adiabatic environment. Their thermal stability characteristics, such as the onset exothermic temperature, the maximum temperature rise rate and the time-to-maximum rate, and the exothermal curves, were obtained. The test data were corrected by thermal inertia factors. The compatibility of DCP/20% sodium carbonate and DCP/20% phenol was calculated by using the theoretical model, consisting of two criteria: the initial exothermic temperature and the average acceleration. It can be seen from the results that the initial exothermic temperature of DCP, DCP/20% sodium carbonate and DCP/20% phenol are 97.47, 106.40 and 115.59℃, respectively. And the maximum temperature rise rates are 65.15, 2.15 and 3.44℃·min-1, respectively, and the average accelerations are 0.2977, 0.0077 and 0.0127. Sodium carbonate and phenol have a good compatibility with DCP as catalysts in industrial yields; however, compared with phenol, sodium carbonate performs much better in manufacturing DCP.
Keywords:dicumyl peroxide  adiabatic stability  accelerating rate calorimeter  compatibility
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