High-temperature decomposition of the cellulose molecule: a stochastic molecular dynamics study

被引:0
|
作者
Antti Paajanen
Jukka Vaari
机构
[1] VTT Technical Research Centre of Finland Ltd.,
来源
Cellulose | 2017年 / 24卷
关键词
Cellulose; Pyrolysis; Molecular dynamics; Stochastic simulation; ReaxFF;
D O I
暂无
中图分类号
学科分类号
摘要
The kinetics and products of cellulose pyrolysis can be studied using large-scale molecular dynamics simulations at high temperatures, where the reaction rates are high enough to make the simulation times practical. We carried out molecular dynamics simulations employing the ReaxFF reactive force field to study the initial step of the thermal decomposition process. We gathered statistics of simulated reactive events at temperatures ranging from 1400 to 2200 K, considering cellulose molecules with different molecular weights and initial conformations. Our simulations suggest that, in gas-phase conditions at these high temperatures, the decomposition occurs primarily through random cleavage of the β(1 → 4)-glycosidic bonds, for which we obtained an activation energy of (171 ± 2) kJ mol−1 and a frequency factor of 1.07±0.12×1015\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\left( {1.07 \pm 0.12} \right) \times 10^{15}$$\end{document} s−1. We did not observe dependency of the kinetic parameters on the molecular weight or initial conformation. Some of the decomposition reactions involved the release of low-molecular-weight products. Excluding radicals, the most commonly observed species were glycolaldehyde, water, formaldehyde and formic acid. Many of our observations are supported by the existing experimental and theoretical knowledge. We did not, however, observe the formation of levoglucosan, which is the dominant product in conventional pyrolysis experiments at much lower temperatures. This is understandable, since the high temperatures can force the dominance of radical reactions over pericyclic reactions. Nevertheless, our results support further use of ReaxFF-based molecular dynamics simulations in the study of cellulose pyrolysis.
引用
收藏
页码:2713 / 2725
页数:12
相关论文
共 50 条
  • [31] Insight into the high-temperature oxidation kinetics of acetylene: A first-principles molecular dynamics study
    Zhang, Teng
    Shou, Liefeng
    Yang, Kun
    Long, Yao
    Chen, Lang
    Wang, Hongliang
    Chen, Jun
    [J]. JOURNAL OF HAZARDOUS MATERIALS, 2024, 466
  • [32] Molecular Dynamics Simulation on the High Temperature Thermal Decomposition of Derivatives of Isowurtzitane
    Gan, Qiang
    Zhang, Wen-Bo
    Wang, Ya-Jun
    Liang, Lin
    Ren, Shu
    Li, Gen
    He, Jia-Jun
    Feng, Chang-Gen
    [J]. Hanneng Cailiao/Chinese Journal of Energetic Materials, 2024, 32 (07): : 711 - 725
  • [33] HIGH-TEMPERATURE GAS DYNAMICS
    ROMBERG, G
    [J]. ACTA MECHANICA, 1972, 15 (3-4) : 191 - &
  • [34] HIGH REACTIVITY OF CELLULOSE AFTER HIGH-TEMPERATURE MERCERIZATION
    PAVLOV, P
    MAKAZTCHIEVA, V
    LOZANOV, E
    [J]. CELLULOSE CHEMISTRY AND TECHNOLOGY, 1992, 26 (02): : 151 - 160
  • [35] Molecular dynamics simulation of nanodroplet impacting on high-temperature plate wall
    Feng Shan-Qing
    Gong Lu-Yuan
    Quan Sheng-Lin
    Guo Ya-Li
    Shen Sheng-Qiang
    [J]. ACTA PHYSICA SINICA, 2024, 73 (10)
  • [36] High-temperature oxidation of carbon fiber and char by molecular dynamics simulation
    Shi, Linyuan
    Sessim, Marina
    Tonks, Michael R.
    Phillpot, Simon R.
    [J]. CARBON, 2021, 185 : 449 - 463
  • [37] Kinetic study on thermal decomposition of the high-temperature superconductor in vacuum microbalance
    G. W. Chądzyński
    V. V. Kutarov
    P. Staszczuk
    [J]. Journal of Thermal Analysis and Calorimetry, 2004, 76 (2) : 633 - 638
  • [38] Kinetic study on thermal decomposition of the high-temperature superconductor in vacuum microbalance
    Chadzynski, GW
    Kutarov, VV
    Staszczuk, A
    [J]. JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2004, 76 (02) : 633 - 638
  • [39] Thermal expansion and decomposition of jarosite: a high-temperature neutron diffraction study
    Hongwu Xu
    Yusheng Zhao
    Sven C. Vogel
    Donald D. Hickmott
    Luke L. Daemen
    Monika A. Hartl
    [J]. Physics and Chemistry of Minerals, 2010, 37 : 73 - 82
  • [40] Thermal expansion and decomposition of jarosite: a high-temperature neutron diffraction study
    Xu, Hongwu
    Zhao, Yusheng
    Vogel, Sven C.
    Hickmott, Donald D.
    Daemen, Luke L.
    Hartl, Monika A.
    [J]. PHYSICS AND CHEMISTRY OF MINERALS, 2010, 37 (02) : 73 - 82