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3,4-双(4'-氨基呋咱-3')-1,2,5-恶二唑的热分解。

Thermal decomposition of 3,4-bis(4'-aminofurazano-3') furoxan.

机构信息

Xi'an Modern Chemistry Research Institute, ZhangBa East Road No 168, Yan Ta District, Xi'an, Shanxi 710065, PR China.

出版信息

J Hazard Mater. 2010 May 15;177(1-3):738-42. doi: 10.1016/j.jhazmat.2009.12.093. Epub 2010 Jan 4.

Abstract

The thermal decomposition of 3,4-bis(4'-aminofurazano-3') furoxan (BAFF) was studied by DSC, TG, the combination technique of in situ thermolysis cell with rapid-scan Fourier transform infrared spectroscopy (thermolysis/RSFT-IR) and the fast thermolysis probe with rapid-scan Fourier transform infrared spectroscopy (fast thermolysis/RSFT-IR). The result shows that the melting point of BAFF is 168.4 degrees C, the peak temperatures of the two exothermic peaks are respectively 260.4 degrees C and 338.8 degrees C on DSC curve. The apparent activation energy E(a) and the pre-exponential factor A are respectively 122.21 kJ mol(-1) and 10(9.89)s(-1) for major exothermic decomposition process of BAFF. The kinetic equation of major exothermic decomposition for BAFF is dalpha/dt=10(10.07)exp(-1.46993 x 10(4)/T)(1-alpha) -ln(1-alpha). The thermal decomposition gaseous products of BAFF consist of CO(2), NO(2), N(2)O and NO. The BAFF is shown by IR spectroscopy to convert to ammonium dicyanamide (NH(4)[N(CN)(2)]), cyclic azine residues (melamine or melamine-like).

摘要

3,4-双(4'-氨基呋咱-3')-呋咱(BAFF)的热分解通过差示扫描量热法(DSC)、热重分析(TG)、原位热解池与快速扫描傅里叶变换红外光谱联用技术(热解/RSFT-IR)和快速热解探针与快速扫描傅里叶变换红外光谱联用技术(快速热解/RSFT-IR)进行了研究。结果表明,BAFF 的熔点为 168.4°C,DSC 曲线上两个放热峰的峰值温度分别为 260.4°C 和 338.8°C。BAFF 主要放热分解过程的表观活化能 E(a)和指前因子 A 分别为 122.21 kJ/mol 和 10(9.89)s(-1)。BAFF 主要放热分解的动力学方程为 dalpha/dt=10(10.07)exp(-1.46993 x 10(4)/T)(1-alpha) -ln(1-alpha)。BAFF 的热分解气态产物包括 CO(2)、NO(2)、N(2)O 和 NO。IR 光谱表明,BAFF 转化为二氰二铵(NH(4)[N(CN)(2)])、环状嗪残基(三聚氰胺或三聚氰胺类似物)。

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