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傅里叶红外光谱法研究GAP/AP混合体系的快速热裂解
引用本文:张腊莹,刘子如,王晓红,衡淑云,邵颖慧,丁黎.傅里叶红外光谱法研究GAP/AP混合体系的快速热裂解[J].光谱学与光谱分析,2013,33(1):14-18.
作者姓名:张腊莹  刘子如  王晓红  衡淑云  邵颖慧  丁黎
作者单位:张腊莹:西安近代化学研究所, 火炸药燃烧国防科技重点实验室, 陕西 西安710065
刘子如:西安近代化学研究所, 火炸药燃烧国防科技重点实验室, 陕西 西安710065
王晓红:西安近代化学研究所, 火炸药燃烧国防科技重点实验室, 陕西 西安710065
衡淑云:西安近代化学研究所, 火炸药燃烧国防科技重点实验室, 陕西 西安710065
邵颖慧:西安近代化学研究所, 火炸药燃烧国防科技重点实验室, 陕西 西安710065
丁黎:西安近代化学研究所, 火炸药燃烧国防科技重点实验室, 陕西 西安710065
基金项目:国防科技重点实验室基金项目(9140C3505030708)资助
摘    要:用T-Jump/FTIR在线联用分析技术,研究了GAP/AP混合体系在模拟燃烧条件下快速加热高温高压的热裂解。结果表明,GAP/AP混合体系的主要热裂解气相产物的组成发生了变化,说明组分之间存在相互作用。压力对GAP/AP混合体系气相产物有明显的影响,表明混合体系组分GAP和AP之间的相互作用是通过AP分解气相产物进行的,混合体系不但存在气相之间的反应,也存在气相/凝聚相反应。而温度并没有影响AP对GAP的作用。用T-Jump/FTIR在线分析技术能够实现模拟燃烧条件下含能材料实时气体产物分析,为从微观反应的角度探索含能材料的快速高压热裂解及其组分之间的相互作用提供一条技术途径。

关 键 词:物理化学  在线分析  T-Jump/FTIR联用技术  GAP/AP混合体系  热裂解
收稿时间:2011/11/16

An Investigation of Fast Thermolysis of GAP/AP System by FTIR Spectroscopy
ZHANG La-ying,LIU Zi-ru,WANG Xiao-hong,HENG Shu-yun,SHAO Ying-hui,DING Li.An Investigation of Fast Thermolysis of GAP/AP System by FTIR Spectroscopy[J].Spectroscopy and Spectral Analysis,2013,33(1):14-18.
Authors:ZHANG La-ying  LIU Zi-ru  WANG Xiao-hong  HENG Shu-yun  SHAO Ying-hui  DING Li
Institution:Xi’an Modern Chemistry Institute,National Key Laboratory of Science and Technology on Combustion and Explosion,Xi’an 710065,China
Abstract:The rapid pyrolysis of GAP/AP system under simulated combustion conditions was investigated by an on-line analysis, i.e. so called T-Jump/FTIR. The results show that the compositions of the main gaseous products for pyrolysis are changed, in comparison with the pyrolyses of single, which indicates that the interactions occur between the components of GAP/AP system. From an obvious effect of pressure on the main gaseous products for GAP/AP pyrolysis it is shown that the interactions between GAP and AP components arise from the gaseous products of AP and both the reactions in gas phase and in gas/condensed phase occur in the GAP/AP mixed system. The interactions between GAP and AP are not affected by test temperature. It is considered that the real time analysis of gaseous products of energetic material pyrolysis under simulated combustion conditions would be carried out by T-Jump/FTIR on-line analysis technique and from microcosmic reaction a technical approach used to explore the rapid pyrolysis of energetic materials and interactions between their components at high temperature and pressure would be developed by the on-line analysis technique from microcosmic reaction.
Keywords:Physical chemistry  On-line analysis  T-Jump/FTIR coupling technique  GAP/AP mixed system  Pyrolysis
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