首页> 外文期刊>Journal of Hazardous Materials >Preparation, characterization, non-isothermal reaction kinetics, thermodynamic properties, and safety performances of high nitrogen compound: Hydrazine 3-nitro-1,2, 4-triazol-5-one complex
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Preparation, characterization, non-isothermal reaction kinetics, thermodynamic properties, and safety performances of high nitrogen compound: Hydrazine 3-nitro-1,2, 4-triazol-5-one complex

机译:高氮化合物:肼基3-硝基-1,2-,4-三唑-5-酮配合物的制备,表征,非等温反应动力学,热力学性质和安全性

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摘要

A new high nitrogen compound hydrazine 3-nitro-1,2.4-triazol-5-one complex (HNTO) was prepared by the reaction of 3-nitro-1,2,4-triazol-5-one with hydrazine hydrate, and its structure was characterized by means of organic elemental analyzer, FT-IR, XRD, ~(13)C NMR and ~(15)N NMR. The non-isothermal reaction kinetics of the main exothermic decomposition reaction of HNTO was investigated by means of DSC. The thermodynamic properties of HNTO were calculated. The results showed that the formation of HNTO is achieved by proton transfer of N(4) atom, and it makes a higher nitrogen content and lower acidity. The reaction mechanism of HNTO is classified as nucleation and growth, and the mechanism function is Avramo-Erofeev equation with n = 2/5. The kinetic parameters of the reaction are E_a = 195.29 kJ mol~(-1), lg(A (s~(-1))) = 19.37, respectively. The kinetic equation can be expressed as: dα/dt = 10~(18.97)(1 - α)[-ln(1 - α)]~(3/5) e~(-2.35 × 10~4/T) The safety performances of HNTO were carried out. The critical temperature of thermal explosion are 464.26 and 474.37 K, the adiabatic time-to-explosion is 262 s, the impact sensitivity H_(50) = 45.7 cm, the friction sensitivity P = 20% and the electrostatic spark sensitivity E_(50) > 5.4 J (no ignition). It shows that HNTO has an insensitive nature as RDX and NTO, etc.
机译:通过3-硝基1,2,4-三唑-5-酮与水合肼的反应制备一种新型的高氮化合物肼3-硝基-1,2.4-三唑-5-酮配合物(HNTO)借助有机元素分析仪,FT-IR,XRD,〜(13)C NMR和〜(15)N NMR对结构进行表征。用DSC研究了HNTO主要放热分解反应的非等温反应动力学。计算了HNTO的热力学性质。结果表明,HNTO的形成是通过N(4)原子的质子转移实现的,并且氮含量较高,酸度较低。 HNTO的反应机理分为成核和生长,其机理函数为n = 2/5的Avramo-Erofeev方程。反应的动力学参数分别为E_a = 195.29 kJ mol〜(-1),lg(A(s〜(-1)))= 19.37。动力学方程可表示为:dα/ dt = 10〜(18.97)(1-α)[-ln(1-α)]〜(3/5)e〜(-2.35×10〜4 / T)进行了HNTO的安全性能。热爆炸的临界温度为464.26和474.37 K,绝热爆炸时间为262 s,冲击敏感度H_(50)= 45.7 cm,摩擦敏感度P = 20%,静电火花敏感度E_(50) > 5.4 J(无点火)。它表明HNTO具有RDX和NTO等不敏感的性质。

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