Mathematical and artificial neural network modeling of production of ethylene from ethane pyrolysis in a tubular reactor

被引:2
作者
Izadkhah, Mir-Shahabeddin [1 ]
Farzi, Ali [1 ]
机构
[1] Univ Tabriz, Fac Chem & Petr Engn, 29 Bahman Blvd, Tabriz 5166616471, Iran
关键词
artificial neural network; ethylene; ethane; mathematical modeling; pyrolysis; STEAM; IDENTIFICATION; CRACKING;
D O I
10.1080/10916466.2018.1445101
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Pyrolysis of lower alkanes is among the main industrial methods for the production of light olefins. In this paper, an artificial neural network (ANN) model was developed in order to predict production of ethylene from ethane pyrolysis based on data obtained from mathematical modeling of the process in a plug flow reactor. Results obtained from the mathematical models were validated using experimental data from the literature. According to the results, the linear regression between network outputs and corresponding targets are proven satisfactory with a correlation coefficient of 1. The optimum number of neurons of 10 was obtained at hidden layer.
引用
收藏
页码:732 / 738
页数:7
相关论文
共 21 条
  • [11] A Mass Transfer Study of Methane and Ethane During Hydrate Formation
    Mohebbi, V.
    Naderifar, A.
    Behbahani, R. M.
    Moshfeghian, M.
    [J]. PETROLEUM SCIENCE AND TECHNOLOGY, 2014, 32 (12) : 1418 - 1425
  • [12] Fundamental reactions of free radicals relevant to pyrolysis reactions
    Poutsma, ML
    [J]. JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2000, 54 (1-2) : 5 - 35
  • [14] Artificial neural network model of a short stack solid oxide fuel cell based on experimental data
    Razbani, Omid
    Assadi, Mohsen
    [J]. JOURNAL OF POWER SOURCES, 2014, 246 : 581 - 586
  • [15] MODELING OF THERMAL-CRACKING KINETICS .3. RADICAL MECHANISMS FOR PYROLYSIS OF SIMPLE PARAFFINS, OLEFINS, AND THEIR MIXTURES
    SUNDARAM, KM
    FROMENT, GF
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY FUNDAMENTALS, 1978, 17 (03): : 174 - 182
  • [16] High-resolution Fourier transform infrared spectrum of the ν12 fundamental band of ethylene (C2H4)
    Tan, TL
    Lau, SY
    Ong, PP
    Goh, KL
    Teo, HH
    [J]. JOURNAL OF MOLECULAR SPECTROSCOPY, 2000, 203 (02) : 310 - 313
  • [17] High pressure, high temperature shock tube studies of ethane pyrolysis and oxidation
    Tranter, RS
    Sivaramakrishnan, R
    Brezinsky, K
    Allendorf, MD
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2002, 4 (11) : 2001 - 2010
  • [18] Kinetic Modeling of Ethane Pyrolysis at High Conversion
    Xu, Chen
    Al Shoaibi, Ahmed Sultan
    Wang, Chenguang
    Carstensen, Hans-Heinrich
    Deant, Anthony M.
    [J]. JOURNAL OF PHYSICAL CHEMISTRY A, 2011, 115 (38) : 10470 - 10490
  • [19] Modeling of ethane pyrolysis process: A study on effects of steam and carbon dioxide on ethylene and hydrogen productions
    Yancheshmeh, M. S. Shokrollahi
    Haghighi, S. Seifzadeh
    Gholipour, M. R.
    Dehghani, O.
    Rahimpour, M. R.
    Raeissi, S.
    [J]. CHEMICAL ENGINEERING JOURNAL, 2013, 215 : 550 - 560
  • [20] ETHYLENE BIOSYNTHESIS AND ITS REGULATION IN HIGHER-PLANTS
    YANG, SF
    HOFFMAN, NE
    [J]. ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1984, 35 : 155 - 189