Reaction behaviors and mechanisms of catalytic pyrolysis of C4 hydrocarbons

被引:36
|
作者
Li, L [1 ]
Gao, JS [1 ]
Xu, CM [1 ]
Meng, XH [1 ]
机构
[1] China Univ Petr, State Key Lab Heavy Oil Proc, Beijing 102249, Peoples R China
关键词
catalytic pyrolysis; C4; hydrocarbons; propylene; ethylene; butylene; reaction behaviors; mechanism;
D O I
10.1016/j.cej.2005.11.002
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Catalytic pyrolysis of C4 hydrocarbons over a modified ZSM-5 zeolite was investigated in a fixed bed reactor. The effects of reaction temperature and dilution ratio on product yields and distribution were studied, ethylene yield goes up monotonously with the enhancement of reaction temperature; meanwhile, propylene yield shows a maximum at about 580 degrees C. As dilution ratio increases, the yield of propylene increases until a dilution ratio of 2.0 is reached, and then changes slightly, and that of ethylene passes through a maximum at about 2.0. For catalytic pyrolysis of n-butylene, two reaction pathways have been proposed, the monomolecular reaction mechanism and the bimolecular reaction mechanism. With the analysis of these two reaction pathways and the experimental data, a conclusion is drawn that catalytic pyrolysis of n-butylene follows the bimolecular reaction mechanism. According to this mechanism, n-butylene catalytic pyrolysis involves two successive reaction steps: the dimerization of n-butylene and the cracking of the dimers. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:155 / 161
页数:7
相关论文
共 50 条
  • [21] CATALYTIC AND THERMAL CRACKING OF PURE HYDROCARBONS - MECHANISMS OF REACTION
    GREENSFELDER, BS
    VOGE, HH
    GOOD, GM
    INDUSTRIAL AND ENGINEERING CHEMISTRY, 1949, 41 (11): : 2573 - 2584
  • [22] Synthesis and catalytic activity of porous Fe–Pd alloys in the decomposition of C2–C4 hydrocarbons
    Anton A. Popov
    Sofya D. Afonnikova
    Andrey D. Varygin
    Yury I. Bauman
    Ilya V. Mishakov
    Pavel E. Plyusnin
    Aleksey A. Vedyagin
    Yury V. Shubin
    Reaction Kinetics, Mechanisms and Catalysis, 2024, 137 : 323 - 338
  • [23] Reaction characteristics of maximizing light olefins and decreasing methane in C5 hydrocarbons catalytic pyrolysis
    Liu, Mei-Jia
    Wang, Gang
    Xu, Shun-Nian
    Zheng, Tao-Ran
    Zhang, Zhong-Dong
    He, Sheng-Bao
    PETROLEUM SCIENCE, 2023, 20 (03) : 1909 - 1921
  • [24] Advances in catalytic pyrolysis of hydrocarbons
    Meng, XH
    Gao, JS
    Li, L
    Xu, CM
    PETROLEUM SCIENCE AND TECHNOLOGY, 2004, 22 (9-10) : 1327 - 1341
  • [25] Recent advances of aromatization catalysts for C4 hydrocarbons
    Zeng, Dehong
    Zhu, Gangli
    Xia, Chungu
    FUEL PROCESSING TECHNOLOGY, 2022, 226
  • [26] Thermal chemistry of C4 hydrocarbons on Pt(111)
    Lee, I
    Zaera, F
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2004, 227 : U842 - U842
  • [27] SITTIG,M - CHEMICALS FROM C4 HYDROCARBONS
    不详
    INDUSTRIE CHIMIQUE BELGE-BELGISCHE CHEMISCHE INDUSTRIE, 1966, 31 (11): : 1189 - &
  • [28] Modelling and integration of process networks for C4 hydrocarbons
    Singbal, Saurav
    Yang, Shiqi
    Zhang, Nan
    COMPUTERS & CHEMICAL ENGINEERING, 2020, 140 (140)
  • [29] MALEIC ANHYDRIDE PRODUCED FROM C4 HYDROCARBONS
    USHIO, S
    CHEMICAL ENGINEERING, 1971, 78 (21) : 107 - &
  • [30] DIFFUSION OF C4 HYDROCARBONS IN SILICALITE-1
    SHEN, D
    REES, LVC
    CARO, J
    BULOW, M
    ZIBROWIUS, B
    JOBIC, H
    JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS, 1990, 86 (23): : 3943 - 3948