Literature DB >> 22548467

High-pressure rate rules for alkyl + O2 reactions. 2. The isomerization, cyclic ether formation, and β-scission reactions of hydroperoxy alkyl radicals.

Stephanie M Villano1, Lam K Huynh, Hans-Heinrich Carstensen, Anthony M Dean.   

Abstract

The unimolecular reactions of hydroperoxy alkyl radicals (QOOH) play a central role in the low-temperature oxidation of hydrocarbons as they compete with the addition of a second O(2) molecule, which is known to provide chain-branching. In this work we present high-pressure rate estimation rules for the most important unimolecular reactions of the β-, γ-, and δ-QOOH radicals: isomerization to RO(2), cyclic ether formation, and selected β-scission reactions. These rate rules are derived from high-pressure rate constants for a series of reactions of a given reaction class. The individual rate expressions are determined from CBS-QB3 electronic structure calculations combined with canonical transition state theory calculations. Next we use the rate rules, along with previously published rate estimation rules for the reactions of alkyl peroxy radicals (RO(2)), to investigate the potential impact of falloff effects in combustion/ignition kinetic modeling. Pressure effects are examined for the reaction of n-butyl radical with O(2) by comparison of concentration versus time profiles that were obtained using two mechanisms at 10 atm: one that contains pressure-dependent rate constants that are obtained from a QRRK/MSC analysis and another that only contains high-pressure rate expressions. These simulations reveal that under most conditions relevant to combustion/ignition problems, the high-pressure rate rules can be used directly to describe the reactions of RO(2) and QOOH. For the same conditions, we also address whether the various isomers equilibrate during reaction. These results indicate that equilibrium is established between the alkyl, RO(2), and γ- and δ-QOOH radicals.

Entities:  

Year:  2012        PMID: 22548467     DOI: 10.1021/jp3023887

Source DB:  PubMed          Journal:  J Phys Chem A        ISSN: 1089-5639            Impact factor:   2.781


  4 in total

1.  High-Pressure-Limit Rate Coefficients for HO2 Elimination Reactions of Hydroperoxyalkenylperoxy Radicals based on the Reaction Class Transition State Theory.

Authors:  XiaoHui Sun; ZhenYu Pei; ZeRong Li
Journal:  ACS Omega       Date:  2022-06-03

2.  An experimental and modeling study of the low- and high-temperature oxidation of cyclohexane.

Authors:  Zeynep Serinyel; Olivier Herbinet; Ophélie Frottier; Patricia Dirrenberger; Valérie Warth; Pierre Alexandre Glaude; Frédérique Battin-Leclerc
Journal:  Combust Flame       Date:  2013-11       Impact factor: 4.185

3.  Assessment of Clinical Diagnostic Efficacy of Pulmonary Function Test Based on DBN-SVM of Pediatric Asthma and Cough Variant Asthma.

Authors:  Hanyi Li; Xinmei Zhang; Qijun Zhao; Xiang Bai; Shuying Wang
Journal:  Comput Intell Neurosci       Date:  2022-03-31

4.  Theoretical Study of Radical-Molecule Reactions with Negative Activation Energies in Combustion: Hydroxyl Radical Addition to Alkenes.

Authors:  FengXia Xiao; XiaoHui Sun; ZeRong Li; XiangYuan Li
Journal:  ACS Omega       Date:  2020-05-26
  4 in total

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