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STUDIES ON THE THERMAL DECOMPOSITION CHARACTERISTICS OF TRIMETHYLOLETHANE TRINITRATE

机译:三甲基乙烷三硝酸三硝基热分解特征的研究

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Thermal decomposition characteristics of trimethylolethane trinitrate (TMETN) are studied under non-isothermal conditions by means of TG-DTG and pressure DSC. The intermediates in coacervate phase are characterized and identified by infrared spectrometry. The results show that at the condition of pressure, the thermal decomposition process of TMETN has two stages. The first stage is attributable to the denitration reaction caused by the rupture of the O ― NO_2 and the secondary reaction between the active gaseous products, such as NO_2, CH_2O etc. The second stage mainly is attributable to the secondary reaction between the inactive gaseous products like NO and ethylene. However, at normal pressure , its thermal decomposition process has only one stage. Under the same conditions of heating rates, the experimental pressure is principal factor affecting the peak shape , the values of peak temperature and apparent heat of decomposition. The non-isothermal kinetic data are analyzed by Kissinger's method. On the basis of the results obtained and information of thermolysis of other nitrate esters, a mechanism for the thermal decomposition of TMETN is proposed.
机译:通过TG-DTG和压力DSC在非等温条件下研究三羟甲基乙酸三硝酸酯(TMETN)的热分解特性。凝聚层中的中间体的表征和鉴定红外光谱法。结果表明,在压力条件下,TMETN的热分解过程具有两个阶段。第一阶段可归因于由O - NO_2的破裂引起的脱硝反应以及活性气态产物之间的二次反应,例如NO_2,CH_2O等。第二阶段主要是归因于非活性气态产品之间的二次反应像没有和乙烯。然而,在常压下,其热分解过程仅具有一个阶段。在相同的加热速率条件下,实验压力是影响峰值形状的主要因素,峰值温度值和分解的表观热量。通过基辛格的方法分析非等温动力学数据。在获得的结果和其他硝酸酯的热解的基础上,提出了一种用于TMETN的热分解的机制。

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