首页> 外文期刊>Indian Journal of Chemistry, Section B. Organic Including Medicinal >Studies on thermal degradation of riot control agent dibenz[b,f]-1,4-oxazepine (CR)
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Studies on thermal degradation of riot control agent dibenz[b,f]-1,4-oxazepine (CR)

机译:骚乱控制剂Dibenz [B,F] -1,4-恶化(Cr)的热降解研究

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摘要

The riot control agent dibenz[b,f]-1,4-oxazepine (CR) is widely used by the law enforcement agencies. Since it is mostly dispersed using explosive device to cause the desired effect, studies have been carried out by exploding CR shells and adsorbing the emanated gases on Tenax TA (R) sorbent tubes. The adsorbed gases are then subjected to automatic thermal desorption - gas chromatography mass spectrometry (ATD-GC-MS) for identification of the components. Flash (analytical) pyrolysis and thermo gravimetric analysis (TGA) have also been conducted in inert atmosphere to simulate the thermal conditions that CR experiences during the process of explosive dispersion. The study has helped to understand thermal stability, identification and quantification of gaseous pyrolysis products of CR. The data has revealed that CR undergoes sublimation with trace decomposition below 500 degrees C. Apart from the products found in real time studies, a large number of mono aromatics and polycyclic aromatic hydrocarbons are observed to be formed at about 800 degrees C. The mechanism of pyrolysis is proposed on the basis of the determined pyrolysates and their relative abundance. The investigation results provide significant information for understanding thermal behaviour of CR.
机译:骚乱控制剂Dibenz [B,F] -1,4-恶化(CR)被执法机构广泛应用于执法机构。由于它主要使用爆炸装置来引起所需效果,因此通过爆炸CR壳和吸附在Tenax Ta(R)吸附管上的散发气体上进行研究。然后对吸附的气体进行自动热解吸 - 气相色谱质谱(ATD-GC-MS)以鉴定组分。闪光(分析)热解和热重量分析(TGA)也在惰性气氛中进行,以模拟CR在爆炸性分散过程中经验的热条件。该研究有助于了解Cr的气态热解产物的热稳定性,鉴定和定量。数据表明,Cr经历升华以低于500摄氏度的痕量分解。除了实时研究中发现的产品外,观察到大量单芳烃和多环芳烃烃在约800℃下形成。基于确定的焦化酸盐及其相对丰度来提出热解。调查结果提供了解CR的热行为的重要信息。

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