Thermal decomposition mechanism of levoglucosan during cellulose pyrolysis

被引:88
|
作者
Zhang, Xiaolei [1 ]
Yang, Weihong [1 ]
Blasiak, Wlodzimierz [1 ]
机构
[1] Royal Inst Technol, Dept Mat Sci & Engn, Div Energy & Furnace Technol, SE-10044 Stockholm, Sweden
基金
瑞典研究理事会;
关键词
Levoglucosan; Cellulose; Pyrolysis; Density functional theory; CATALYSIS; GLUCOSE; DFT;
D O I
10.1016/j.jaap.2012.03.012
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Levoglucosan (1,6-anhydro-beta-D-glucopyranose) decomposition is an important step during cellulose pyrolysis and for secondary tar reactions. The mechanism of levoglucosan thermal decomposition was studied in this paper using density functional theory methods. The decomposition included direct C-O bond breaking, direct C-C bond breaking, and dehydration. In total, 9 different pathways, including 16 elementary reactions, were studied, in which levoglucosan serves as a reactant. The properties of the reactants, transition states, intermediates, and products for every elementary reaction were obtained. It was found that 1-pentene-3,4-dione, acetaldehyde, 2,3-dihydroxypropanal, and propanedialdehyde can be formed from the C-O bond breaking decomposition reactions. 1,2-Dihydroxyethene and hydroxyacetic acid vinyl ester can be formed from the C C bond breaking decomposition reactions. It was concluded that C-O bond breaking is easier than C-C bond breaking due to a lower activation energy and a higher released energy. During the 6 levoglucosan dehydration pathways, one water molecule which composed of a hydrogen atom from C3 and a hydroxyl group from C2 is the preferred pathway due to a lower activation energy and higher product stability. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:110 / 119
页数:10
相关论文
共 50 条
  • [11] Thermal degradation pathways of levoglucosan as an intermediate in cellulose pyrolysis
    Bahng, Mi-Kyung
    Carstensen, Hans-Heinrich
    Vasiliou, AnGayle
    Ellison, G. Barney
    Nimlos, Mark R.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2009, 237
  • [12] Kinetics of levoglucosan and formaldehyde formation during cellulose pyrolysis process
    Zhang, Xiaolei
    Yang, Weihong
    Blasiak, Wlodzimierz
    FUEL, 2012, 96 (01) : 383 - 391
  • [13] Role of levoglucosan physiochemistry in cellulose pyrolysis
    Bai, Xianglan
    Johnston, Patrick
    Sadula, Sunitha
    Brown, Robert C.
    JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2013, 99 : 58 - 65
  • [14] On the Yield of Levoglucosan from Cellulose Pyrolysis
    Maduskar, Saurabh
    Maliekkal, Vineet
    Neurock, Matthew
    Dauenhauer, Paul J.
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2018, 6 (05): : 7017 - 7025
  • [15] Competing reactions limit levoglucosan yield during fast pyrolysis of cellulose
    Lindstrom, Jake K.
    Proano-Aviles, Juan
    Johnston, Patrick A.
    Peterson, Chad A.
    Stansell, Jackson S.
    Brown, Robert C.
    GREEN CHEMISTRY, 2019, 21 (01) : 178 - 186
  • [16] Insight into the mechanism of secondary reactions in cellulose pyrolysis: interactions between levoglucosan and acetic acid
    Lu, Qiang
    Wu, Yu-ting
    Hu, Bin
    Liu, Ji
    Liu, Ding-jia
    Dong, Chang-qing
    Yang, Yong-ping
    CELLULOSE, 2019, 26 (15) : 8279 - 8290
  • [17] Insight into the mechanism of secondary reactions in cellulose pyrolysis: interactions between levoglucosan and acetic acid
    Qiang Lu
    Yu-ting Wu
    Bin Hu
    Ji Liu
    Ding-jia Liu
    Chang-qing Dong
    Yong-ping Yang
    Cellulose, 2019, 26 : 8279 - 8290
  • [18] Secondary Reactions of Levoglucosan and Char in the Fast Pyrolysis of Cellulose
    Ronsse, Frederik
    Bai, Xianglan
    Prins, Wolter
    Brown, Robert C.
    ENVIRONMENTAL PROGRESS & SUSTAINABLE ENERGY, 2012, 31 (02) : 256 - 260
  • [19] MECHANISM OF THERMAL-DECOMPOSITION OF CELLULOSE
    KISLITSY.AN
    SAVINYKH, VI
    RODIONOV.ZM
    GUSEVA, AV
    ZHURNAL PRIKLADNOI KHIMII, 1971, 44 (11) : 2518 - +
  • [20] Mechanistic and kinetic investigation on maximizing the formation of levoglucosan from cellulose during biomass pyrolysis
    Shaw, Alexander
    Zhang, Xiaolei
    Kabalan, Lara
    Li, Jun
    FUEL, 2021, 286