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磷酸三乙酯(TEP)反应速率的理论计算与燃烧动力学建模研究

Theoretical Calculation of Reaction Rates and Combustion Kinetic Modeling Study of Triethyl Phosphate (TEP).

作者信息

Neupane Sneha, Rahman Ramees K, Masunov Artëm E, Vasu Subith S

出版信息

J Phys Chem A. 2019 Jun 6;123(22):4764-4775. doi: 10.1021/acs.jpca.9b00636. Epub 2019 Apr 22.

Abstract

Triethyl phosphate (TEP) is an organophosphorus compound used as a simulant for highly toxic nerve agents such as sarin GB. A high temperature decomposition pathway during TEP pyrolysis has been proposed previously and takes place via seven concerted elimination reactions. A computational study to investigate the kinetics of these seven reactions was carried out at the CBS-QB3 level of theory. The transition state optimization was done at the B3LYP/6-311G(2d,d,p) theory level, and CanTherm was used to derive the Arrhenius coefficients. The pre-exponential factors of the rate constant of these reactions were found to be up to 50 times lower than the estimated values from the literature. In addition, kinetics of reaction of the trioxidophosphorus radical (PO) with H (H + PO → HOPO + H), which is one of the important reactions in predicting CO formation during TEP decomposition, was also investigated computationally at the same theory level. The new kinetic parameters derived from the computational study were used with the TEP kinetic model proposed recently by our group. In addition, an alternative decomposition pathway for TEP decomposition via H-abstraction, radical decomposition, and recombination reactions was added. The proposed mechanism was validated with the literature's experimental data, that is, intermediate CO time-history data from pyrolysis and oxidation experiments and ignition delay times. Fairly good agreement with experiments was obtained for pyrolysis and oxidation CO yield within 1200-1700 K. The model was able to predict the ignition times of the rich TEP mixture (φ = 2) within 25% of the experimental results, while the discrepancies for stoichiometric and rich mixtures were larger. Discussions on results of sensitivity and reaction pathway analysis are presented to identify the important phosphorus reactions and to understand the effect of addition of the alternative TEP decomposition pathway.

摘要

磷酸三乙酯(TEP)是一种有机磷化合物,用作沙林GB等剧毒神经毒剂的模拟物。此前已提出TEP热解过程中的高温分解途径,该途径通过七个协同消除反应进行。在CBS-QB3理论水平上进行了一项计算研究,以研究这七个反应的动力学。过渡态优化在B3LYP/6-311G(2d,d,p)理论水平上完成,并使用CanTherm推导阿伦尼乌斯系数。发现这些反应速率常数的指前因子比文献估计值低多达50倍。此外,还在相同理论水平上通过计算研究了三氧化磷自由基(PO)与H(H + PO → HOPO + H)反应的动力学,这是预测TEP分解过程中CO形成的重要反应之一。从计算研究中得出的新动力学参数与我们小组最近提出的TEP动力学模型一起使用。此外,还添加了通过氢提取、自由基分解和重组反应进行TEP分解的替代分解途径。所提出的机理用文献中的实验数据进行了验证,即热解和氧化实验的中间CO时间历程数据以及点火延迟时间。在1200 - 1700 K范围内,热解和氧化CO产率与实验结果相当吻合。该模型能够在实验结果的25%范围内预测富TEP混合物(φ = 2)的点火时间,而化学计量混合物和富混合物的差异较大。文中给出了敏感性和反应途径分析结果的讨论,以确定重要的磷反应,并了解添加替代TEP分解途径的影响。

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