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偶氮二异丁腈热安全性分析与评估
引用本文:万伟,陈网桦,卫水爱,沈紫晨,张彩星.偶氮二异丁腈热安全性分析与评估[J].中国安全科学学报,2012(8):131-137.
作者姓名:万伟  陈网桦  卫水爱  沈紫晨  张彩星
作者单位:南京理工大学化工学院;兵器工业安全技术研究所
摘    要:为获得偶氮二异丁腈(AIBN)在各种热应力条件下的危险参数,通过简化的压力容器试验测试AIBN的热分解激烈性等级,采用差示扫描量热仪(DSC)和绝热量热仪(ARC)对AIBN的热分解过程进行研究,用动力学与热稳定性分析软件AKTS计算动力学参数在整个反应进程中的变化情况,并根据ARC测试结果推算自加速分解温度(TSADT)。结果表明:AIBN的热分解激烈性为Ⅱ类,易呈现爆炸特性;其初始分解温度和TSADT很低,分别约为78℃和61℃,且分解放热过程和熔融吸热过程同时发生。因此,在AIBN的生产、使用、贮存和运输等过程中应加强温度监控,并根据实际情况采取降温措施。

关 键 词:热安全  偶氮二异丁腈(AIBN)  差示扫描量热仪(DSC)  绝热量热仪(ARC)  热分解激烈性  动力学参数  自加速分解温度(TSADT)

Analysis and Assessment of the Thermal Safety of Azobisisobutyronitrile
WAN Wei,CHEN Wang-hua,WEI Shui-ai,SHEN Zi-chen,ZHANG Cai-xing.Analysis and Assessment of the Thermal Safety of Azobisisobutyronitrile[J].China Safety Science Journal,2012(8):131-137.
Authors:WAN Wei  CHEN Wang-hua  WEI Shui-ai  SHEN Zi-chen  ZHANG Cai-xing
Institution:1(1 School of Chemical Engineering,Nanjing University of Science & Technology,Nanjing Jiangsu 210094,China 2 Safety Technology Research Institute of Ordnance Industrial,Beijing 100053,China)
Abstract:In order to get hazardous parameters of AIBN under various thermal stress conditions,a simplified Pressure Vessel Test was carried out to test the decomposition intensity of AIBN.Both DSC and ARC were used to study the thermal decomposition process of it.Kinetic parameters in the whole reaction process were calculated by using the software,named as Advanced Kinetics and Technology Solutions AKTS.TSADT was acquired by extrapolation method based on ARC data.Results show that the decomposition intensity of AIBN is Ⅱ and it is easy to show explosive property,that the onset temperature(about 78℃) and TSADT(about 60℃) are very low,and that the exothermic decomposition reaction takes place parallel with the endothermic melting process.So,in the actual process of production,usage,storage and transportation of AIBN,it is essential to strengthen temperature monitoring and take effective measures to cool it according to the actual situations.
Keywords:thermal safety  azobisisobutyronitrile(AIBN)  differential scanning calorimeter(DSC)  accelerating rate calorimeter(ARC)  thermal decomposition intensity  kinetic parameters  self-accelerating decomposition temperature(TSADT)
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