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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >DECOMPOSITION OF DIPHENYLAMINE IN NITROCELLULOSE BASED PROPELLANTS-- I. OPTIMIZATION OF A NUMERICAL MODEL TO CONCENTRATION-TIME DATA FOR DIPHENYLAMINE AND ITS PRIMARY DEGRADATION PRODUCTS DETERMINED BY LIQUID CHROMATOGRAPHY WITH DUAL-AMPEROMETRIC DET
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DECOMPOSITION OF DIPHENYLAMINE IN NITROCELLULOSE BASED PROPELLANTS-- I. OPTIMIZATION OF A NUMERICAL MODEL TO CONCENTRATION-TIME DATA FOR DIPHENYLAMINE AND ITS PRIMARY DEGRADATION PRODUCTS DETERMINED BY LIQUID CHROMATOGRAPHY WITH DUAL-AMPEROMETRIC DET

机译:二苯胺在硝化纤维素推进剂中的分解-I.用双安培法测定液相色谱法测定二苯胺及其主要降解产物的浓度数据的数值模型的优化

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摘要

The consumption of dipheoylamine (DPA) in two nitrocellulose (NC) based propellants subjected to a heat storage test at 85 has been studied. A previously developed method based on reversed-phase liquid chromatography with dual-amperometric detection was used to monitor the concentrations of DPA, 2-nitro-DPA and 4-nitro-DPA during the test. A numerical model based on first Order rate equations was fitted to the obtained analytical data with the use of a specially written curve fitting program. The model implemented in the program describes the initial nilrosation and nitration steps of DPA in aging NC propellants. The use of matrices in the calculation of concentration-time (CT) curves enables the introduction of a general algorithm which can .be readily changed in order to simulate any system of first order reactions. The program can therefore be used in other applications such as mechanistic studies in organic synthesis. The general simulation algorithm allows inclusion of unknown (not analysed) components in the reaction mechanism. In this application, it was possible to simulate the course of Af-nitroso-DPA which is not detectable by the amperometric principle.
机译:研究了在85°C下进行储热测试的两种基于硝化纤维(NC)的推进剂中二苯乙胺(DPA)的消耗量。在测试过程中,使用了基于反相液相色谱和双安培检测的先前开发的方法来监测DPA,2-硝基-DPA和4-硝基-DPA的浓度。使用专门编写的曲线拟合程序,将基于一阶速率方程的数值模型拟合到获得的分析数据。该程序中执行的模型描述了老化的NC推进剂中DPA的初始硝化和硝化步骤。在浓度-时间(CT)曲线的计算中使用矩阵可以引入通用算法,该通用算法可以很容易地更改以模拟任何一阶反应系统。因此,该程序可用于其他应用程序,例如有机合成中的机理研究。通用模拟算法允许在反应机理中包含未知(未分析)的成分。在该应用中,可以模拟安培原理无法检测到的Af-亚硝基-DPA的过程。

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