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Application of Ab Initio Quantum Mechanical Calculations to Investigate Oxidation of C-7 and C-14 Methyl Esters: An Alternative Fuel

机译:从头算量子力学计算在研究C-7和C-14甲基酯氧化中的应用:替代燃料

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摘要

Using the GAUSSIAN 03 (Frisch et al., 2004, GAUSSIAN 03, Revision C.O2, Gaussian, Inc., Wallingford, CT) program, the electronic structure of the C-14 and C-7 methyl esters, C_(14)H_(28)O_2 (methyl tridecanoate) and C_7H_(14)O_2 (methyl hexanoate), was estimated. For the electronic calculations, the density functional theory at the B3LYP/6-3llG(d,p) level and the complete basis set (CBS-QB3) were applied. Bond dissociation energies for C-14 and C-7 esters were evaluated and compared with those of methyl butanoate, C_5H_(10)O_2. Using the KHIMERA program (2007, KHIMERA04, Version 1.1, Motorola Inc; Novoselov et al, 2002, "CHIMERA: A Software Tool for Reaction Rate Calculations and Kinetics and Thermodynamics Analysis," J. Comput. Chem., 23, pp. 1375-1389), contributions from energies, harmonic vibrational frequencies, and moments of inertia were utilized to construct modified Arrhenius rate expressions for bimolecular reactions. C_7H_(14)O_2 was selected as a surrogate for the C_(14) fuel in order to study the bimolecular reactions with flame radicals. In the present work, reactions of carbon numbers 4 and 5 of C_7H_(14)O_2, where carbon number 1 is the one. single bonded to oxygen atom, with flame reactive radicals such as CH_3, HO_2, and H were studied where the rates for the reactions of other carbon sites can be obtained from studying methyl butanoate's reactions. The rate expressions were estimated using transition state theory as implemented in khimera over the temperature of 500-2000 K.
机译:使用GAUSSIAN 03(Frisch等人,2004,GAUSSIAN 03,修订版C.O2,Gaussian,Inc.,Wallingford,CT)程序,计算C-14和C-7甲酯的电子结构C_(14)估计了H_(28)O_2(十三烷酸甲酯)和C_7H_(14)O_2(己酸甲酯)。对于电子计算,应用了B3LYP / 6-3llG(d,p)级的密度泛函理论和完整的基础集(CBS-QB3)。评估了C-14和C-7酯的键解离能,并将其与丁酸甲酯C_5H_(10)O_2的解离能进行了比较。使用KHIMERA程序(2007年,KHIMERA04,版本1.1,摩托罗拉公司; Novoselov等人,2002年,“ CHIMERA:用于反应速率计算以及动力学和热力学分析的软件工具”,J。Comput。Chem。,23,第1375页) (-1389),利用能量,谐波振动频率和惯性矩的贡献来构建双分子反应的修正Arrhenius速率表达式。为了研究与火焰自由基的双分子反应,选择了C_7H_(14)O_2作为C_(14)燃料的替代物。在当前的工作中,C_7H_(14)O_2的碳数4和5的反应,其中碳数1是一个。研究了具有氧反应性自由基(如CH_3,HO_2和H)的单键结合到氧原子的方法,其中通过研究丁酸甲酯的反应可以获得其他碳位反应的速率。速率表达式是使用过渡态理论估算的,该理论在khimera中在500-2000 K的温度下实施。

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  • 来源
    《Journal of Energy Resources Technology》 |2011年第1期|p.1-7|共7页
  • 作者单位

    CFD Centre,University of Leeds,Leeds LS2 9JT, UK;

    CFD Centre,University of Leeds,Leeds LS2 9JT, UK;

    CFD Centre,University of Leeds,Leeds LS2 9JT, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 00:30:14

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