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Research on thermal decomposition of trinitrophloroglucinol salts by DSC, TG and DVST

机译:DSC,TG和DVST热分解三硝基间苯三酚盐的研究

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摘要

The thermal decomposition of the four nitrogen-rich salts of ammonia (NH4), aminoguanidine (AG), carbohydrazide (CHZ) and 5-aminotetrazo (ATZ) based on trinitrophloroglucinol (H3TNPG) was investigated using the differential scanning calorimetry (DSC), thermogravity (TG), and dynamic vacuum stability test (DVST). DSC and TG methods research the complete decomposition, while DVST method researches the very early reaction stage. The peak temperatures of DSC curves are consistent with the temperatures of maximum mass loss rates of TG curves. The apparent activation energies of these H3TNPG-based salts obtained by DSC and DVST have the same regularity, i.e., (ATZ)(H2TNPG) ·2H2O < (CHZ)(HTNPG) ·0.5H2O < NH4(H2TNPG) < (AG)(H2TNPG). The thermal stability order is (ATZ)(H2TNPG) ·2H2O < (CHZ)(HTNPG) ·0.5H2O < (AG)(H2TNPG) < NH4(H2TNPG), which was evaluated by DVST according to the evolved gas amount of thermal decomposition. DVST can monitor the real-time temperature and pressure changes caused by thermal decomposition, dehydration, phase transition and secondary reaction, and also evaluate the thermal stability and kinetics.
机译:使用差示扫描量热法(DSC),热重法研究了基于三硝基间苯三酚(H3TNPG)的氨(NH4),氨基胍(AG),碳酰肼(CHZ)和5-氨基四唑(ATZ)的四种富氮盐的热分解。 (TG)和动态真空稳定性测试(DVST)。 DSC和TG方法研究完全分解,而DVST方法研究非常早的反应阶段。 DSC曲线的峰值温度与TG曲线的最大质量损失率的温度一致。通过DSC和DVST获得的这些基于H3TNPG的盐的表观活化能具有相同的规律性,即(ATZ)(H2TNPG)·2H2O <(CHZ)(HTNPG)·0.5H2O

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