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影响六亚甲基三过氧化二胺分子内分解的因素及其检测意义

Factors affecting the intramolecular decomposition of hexamethylene triperoxide diamine and implications for detection.

作者信息

Steinkamp Frank Lucus, DeGreeff Lauryn E, Collins Greg E, Rose-Pehrsson Susan L

机构信息

Former National Research Council post-doctoral fellow at U.S. Naval Research Laboratory, 4555 Overlook Ave. SW, Washington, DC 20375, United States.

U.S. Naval Research Laboratory, 4555 Overlook Ave. SW, Washington, DC 20375, United States.

出版信息

J Chromatogr A. 2016 Jun 17;1451:83-90. doi: 10.1016/j.chroma.2016.05.013. Epub 2016 May 5.

Abstract

Hexamethylene triperoxide diamine (HMTD) is an easily synthesized and highly sensitive organic peroxide frequently used as a primary explosive. The vapor pressure of HMTD is very low, impeding vapor detection, especially when compared to other peroxide explosives, such as triacetone triperoxide (TATP) or diacetone diperoxide (DADP). Despite this fact, HMTD has a perceptible odor that could be utilized in the indirect detection of HMTD vapor. Headspace measurements above solid HMTD samples confirm that HMTD readily decomposes under ambient conditions to form highly volatile products that include formic acid, ammonia, trimethylamine and formamides. The presence and quantity of these compounds are affected by storage condition, time, and synthetic method, with synthetic method having the most significant effect on the content of the headspace. A kinetic study of HMTD decomposition in solution indicated a correlation between degradation rate and the presence of decomposition species identified in the headspace, and provided further insight into the mechanism of decomposition. The study provided evidence for a proton assisted decomposition reaction with water, as well as an intramolecular decomposition process facilitated by the presence of water.

摘要

六亚甲基三过氧化二胺(HMTD)是一种易于合成且灵敏度高的有机过氧化物,常被用作起爆药。HMTD的蒸气压非常低,这阻碍了其蒸气的检测,特别是与其他过氧化物炸药相比,如三丙酮三过氧化二胺(TATP)或二丙酮二过氧化二胺(DADP)。尽管如此,HMTD具有可察觉的气味,可用于间接检测HMTD蒸气。对固态HMTD样品上方的顶空测量证实,HMTD在环境条件下容易分解,形成包括甲酸、氨、三甲胺和甲酰胺在内的高挥发性产物。这些化合物的存在和数量受储存条件、时间和合成方法的影响,其中合成方法对顶空成分的影响最为显著。对HMTD在溶液中分解的动力学研究表明,降解速率与顶空中鉴定出的分解产物的存在之间存在相关性,并进一步深入了解了分解机理。该研究为质子辅助的与水的分解反应以及水的存在促进的分子内分解过程提供了证据。

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