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Structural effects on the oxidation of soot particles by O_2: Experimental and theoretical study

机译:O_2对烟灰颗粒氧化的结构影响:实验和理论研究

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摘要

Soot particles are composed of polycyclic aromatic hydrocarbons (PAHs), which have either planar or curved structures. The oxidation behaviors of soot particles differ depending on their structures, arrangement of PAHs, and the type of surface functional groups. The oxidation rate of curved PAHs in soot is thought to be higher than that of planar ones. To understand the role that PAH structure plays in soot reactivity towards O_2, experimental studies are conducted on two types of commercially produced soot, Printex-U and Fullerene soot, using high resolution transmission electron microscopy, electron energy loss spectroscopy, thermo-gravimetric analysis and elemental analysis. The relative concentrations of active sites, oxygenated functional groups, aliphatics and aromatics present in soots are evaluated. The activation energies for soot oxidation at different conversion levels are determined. The average activation energies of the two soots are found to differ by 26 kJ/mol. To understand the reason for this difference, quantum calculations using density functional (B3LYP) and Hartree-Fock theories are conducted to study the reaction pathways of the oxidation by O_2 of planar and curved PAHs using 4-pyrenyl and 1 -cor-annulenyl as their model molecules, respectively. The energetically preferred channels for curved PAH oxidation differ from the planar one. The addition of O_2 on a radical site of a six-membered ring to form a peroxyl radical is found to be barrierless for both the model PAHs. For peroxyl decomposition, three pathways are suggested, each of which involve the activation energies of 108, 170 and 121 kJ/mol to form stable molecules in the case of planar PAH, and 94,155 and 125 kJ/mol in the case of curved PAH. During the oxidation of a five-membered ring, to form stable molecules, the activation energies of 90 kJ/mol for the curved PAH and 169 kJ/mol for the planar PAH relative to the energy of the peroxyl radical are required. The low activation barriers of preferred pathways for the oxidation of six and five-membered rings present on curved PAH (as compared to the planar one) explain and support its experimentally observed high reactivity.
机译:烟灰颗粒由具有平面或弯曲结构的多环芳烃(PAH)组成。烟灰颗粒的氧化行为取决于其结构,多环芳烃的排列以及表面官能团的类型。烟灰中弯曲的PAHs的氧化速率被认为比平面的高。为了解PAH结构在烟灰对O_2的反应性中的作用,使用高分辨率透射电子显微镜,电子能量损失谱,热重分析和热重分析对两种商业生产的烟灰进行了研究,即Printex-U和富勒烯烟灰。元素分析。评估烟so中存在的活性位点,氧化官能团,脂族和芳族化合物的相对浓度。确定了在不同转化率下烟灰氧化的活化能。发现两个烟s的平均活化能相差26 kJ / mol。为了理解这种差异的原因,使用密度泛函(B3LYP)和Hartree-Fock理论进行了量子计算,以研究平面和弯曲PAHs被O_2氧化的反应途径,该反应以4-吡啶基和1 -cor-环戊烯基为基础。模型分子。弯曲的PAH氧化在能量上优选的通道不同于平面的通道。对于两个模型PAH,发现在六元环的自由基位点上添加O_2以形成过氧自由基是无障碍的。对于过氧化物的分解,提出了三种途径,每一种途径涉及的活化能分别为108、170和121 kJ / mol,在平面PAH情况下形成稳定分子,而在94,155和125 kJ / mol的曲线PAH中。在五元环的氧化过程中,为了形成稳定的分子,相对于过氧自由基的能量,弯曲PAH的活化能为90 kJ / mol,平面PAH的活化能为169 kJ / mol。弯曲的PAH上存在的六元和五元环氧化的优选途径的低活化势垒(与平面的相比)解释并支持了其实验观察到的高反应性。

著录项

  • 来源
    《Combustion and Flame》 |2013年第9期|1812-1826|共15页
  • 作者单位

    Department of Chemical Engineering, The Petroleum Institute, Abu Dhabi, United Arab Emirates,Clean Combustion Research Center, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia;

    Clean Combustion Research Center, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia;

    Advanced Nanofabrication Imaging and Characterization Core Laboratory, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia;

    Water Desalination and Reuse Center, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia;

    Clean Combustion Research Center, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PAH; Soot; Oxidation; Kinetic mechanism; Density functional theory;

    机译:PAH;煤烟;氧化;动力学机理;密度泛函理论;
  • 入库时间 2022-08-18 00:11:51

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