摘要
Benzoyl radical(C6H5ĊO)is a primary intermediate of benzaldehyde oxidation, which is mainly decomposed in the previous studies without considering the oxygen addition reaction. In order to clarify the importance of acyl radical addition to oxygen in aldehydes oxidation particularly at low temperatures, the effect of acetyl addition to oxygen in acetaldehyde oxidation at low temperatures is examined at first. Then, the potential energy surface of C6H5ĊO+O2 is evaluated at the level of DLPNO-CCSD(T)/cc-pVTZ//M06-2X/6-311++G(d, p). Based on the RRKM/ME method, the micro-canonical variational transition state theory(VTST) is used to obtain the temperature and pressure dependent reaction rate coefficients, providing important reference for the improvement of benzaldehyde oxidation mechanism at low temperatures. In addition, the effect of newly calculated reac-tion channels on the oxidation mechanism of benzaldehyde is investigated, and it is revealed that the effects of newly calculated reactions on benzaldehyde sub-mechanisms differ significantly. The main cause is the difference in the thermodynamic parameters of key species involved in the benzaldehyde oxidation reactions of different models.
| 投稿的翻译标题 | Ab Initio Calculation of the Rate Coefficients for Low-Temperature Oxidation Dominated Reaction: C6H5ĊO+O2 |
|---|---|
| 源语言 | 繁体中文 |
| 页(从-至) | 521-528 |
| 页数 | 8 |
| 期刊 | Ranshao Kexue Yu Jishu/Journal of Combustion Science and Technology |
| 卷 | 26 |
| 期 | 6 |
| 出版状态 | 已出版 - 15 12月 2020 |
关键词
- Benzoyl radical
- Micro-canonical variational transition state theory
- Oxygen addition
- Pressure-dependent
- RRKM/ME
学术指纹
探究 '苯甲醛低温氧化主导反应速率系数从头算:C6H5ĊO+O2加成反应' 的科研主题。它们共同构成独一无二的指纹。引用此
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