Unraveling combustion chemistry of tetramethoxysilane in flow reactor pyrolysis and laminar flame propagation

被引:4
|
作者
Zhang, Yan [1 ]
Xia, Jingxian [1 ]
Fang, Qilong [1 ]
Mei, Bowen [1 ]
Li, Wei [1 ]
Li, Tianyu [1 ]
Li, Yuyang [1 ]
机构
[1] Shanghai Jiao Tong Univ, Sch Mech Engn, Key Lab Power Machinery & Engn MOE, Shanghai 200240, Peoples R China
基金
国家重点研发计划;
关键词
Tetramethoxysilane; Flow reactor pyrolysis; Laminar burning velocity; Kinetic model; Methanol elimination; THERMAL-DECOMPOSITION; TETRAMETHYL ORTHOSILICATE; PRESSURES; NANOPARTICLES; MIXTURES; AMMONIA; SPEEDS;
D O I
10.1016/j.combustflame.2022.112169
中图分类号
O414.1 [热力学];
学科分类号
摘要
Tetramethoxysilane (TMOS, Si(OCH 3 ) 4 ) is a widely used precursor in the vapor-fed aerosol flame synthesis (VAFS) of silica nanoparticles. This work reports the first attempt to investigate the flow reactor pyrolysis and laminar flame propagation of TMOS. Pyrolysis species were detected using gas chromatography (GC) at 1.09 atm and 930-1250 K, such as methane, methanol, ethylene, ethane and carbon monoxide, and their mole fraction profiles versus the heating temperature were also measured. The laminar flame propagation of TMOS/air mixtures was investigated in a constant-volume cylindrical combustion vessel at the initial pressure (P u ) of 1 atm, initial temperature (T u ) of 373 K and equivalence ratios from 0.7 to 1.4. TMOS has generally lower laminar burning velocities (LBVs) than many hydrocarbon fuels due to the high oxygen content and consequently low adiabatic flame temperature of TMOS. A kinetic model of TMOS combustion was developed and validated against both the new data in this work and the shock tube pyrolysis data in literature. Rate of production (ROP) analysis and sensitivity analysis were performed to provide insight into the key pathways in TMOS decomposition. In the flow reactor pyrolysis, the methanol elimination reaction and the H-abstraction reactions dominate the decomposition of TMOS. Among the primary decomposition products, CH 2 OSi(OCH 3 ) 2 mainly isomerizes to CH 3 OSi( = O)OC 2 H 5 , while CH 2 OSi(OCH 3 ) 3 and OSi(OCH 3 ) 3 mainly decompose via beta-Si-O scission reactions producing OSi(OCH 3 ) 3 and OSi(OCH 3 ) 2 , respectively. The primary decomposition pathways of TMOS can all eventually lead to the formation of SiO 2 . In the laminar flame propagation, the modeling analyses indicate formaldehyde and methyl radical are abundantly produced, making many reactions involving the two intermediates influential on the laminar flame propagation of TMOS. (c) 2022 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Experimental and kinetic modeling investigation on sec-butylbenzene combustion: Flow reactor pyrolysis and laminar flame propagation at various pressures
    Zhang, Yan
    Mei, Bowen
    Cao, Chuangchuang
    Zhang, Xiaoyuan
    Yuan, Wenhao
    Yang, Jiuzhong
    Li, Yuyang
    [J]. COMBUSTION AND FLAME, 2020, 211 : 18 - 31
  • [2] Unraveling combustion chemistry of dimethyldiethoxysilane. II. A comprehensive study on the laminar flame propagation of ethoxysilane flame synthesis precursors
    Fang, Qilong
    Fang, Jun
    Zhang, Yi
    Lian, Tianyou
    Li, Wei
    Ye, Lili
    Li, Yuyang
    [J]. Combustion and Flame, 2024, 270
  • [3] Experimental and kinetic modeling study of n-propanol and i-propanol combustion: Flow reactor pyrolysis and laminar flame propagation
    Li, Wei
    Zhang, Yan
    Mei, Bowen
    Li, Yuyang
    Cao, Chuangchuang
    Zou, Jiabiao
    Yang, Jiuzhong
    Cheng, Zhanjun
    [J]. COMBUSTION AND FLAME, 2019, 207 : 171 - 185
  • [4] Advances and challenges in laminar flame experiments and implications for combustion chemistry
    Egolfopoulos, F. N.
    Hansen, N.
    Ju, Y.
    Kohse-Hoeinghaus, K.
    Law, C. K.
    Qi, F.
    [J]. PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 2014, 43 : 36 - 67
  • [5] Decoupling pyrolysis and combustion of organic powders to determine the laminar flame speed
    Pietraccini, Matteo
    Santandrea, Audrey
    Glaude, Pierre-Alexandre
    Dufour, Anthony
    Dufaud, Olivier
    [J]. CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 2024,
  • [6] INFLUENCE OF STRAIN ON FLAME PROPAGATION IN LAMINAR-FLOW
    DANESHYAR, H
    MENDESLOPES, JMC
    [J]. INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 1982, 24 (09) : 529 - 535
  • [7] Experimental study on the flame propagation and laminar combustion characteristics of landfill gas
    Zeng, Wen
    Liu, Jing
    Ma, Hongan
    Liu, Yu
    Liu, Aiguo
    [J]. ENERGY, 2018, 158 : 437 - 448
  • [8] Propene pyrolysis and oxidation kinetics in a flow reactor and laminar flames
    Davis, SG
    Law, CK
    Wang, H
    [J]. COMBUSTION AND FLAME, 1999, 119 (04) : 375 - 399
  • [9] KINETIC MODELING OF COAL PYROLYSIS IN A LAMINAR-FLOW REACTOR
    OBRIEN, WS
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1987, 194 : 21 - FUEL
  • [10] Exploring combustion chemistry of 1-pentene: Flow reactor pyrolysis at various pressures and development of a detailed combustion model
    Cao, Chuangchuang
    Li, Wei
    Chen, Weiye
    Ahmad, Hafiz
    Yang, Jiuzhong
    Li, Yuyang
    [J]. INTERNATIONAL JOURNAL OF CHEMICAL KINETICS, 2021, 53 (04) : 514 - 526