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PLS-based kinetics modeling and optimization of the oxidative coupling of methane over Na2WO4/Mn/SiO2 catalyst

Authors
Lee, Mi RanPark, Myung-JuneJeon, WonjinChoi, Jae-WookSuh, Young-WoongSuh, Dong Jin
Issue Date
Nov-2011
Publisher
한국화학공학회
Keywords
Methane; Oxidative Coupling; Partial Least Squares; Mathematical Modeling; Optimization; Na2WO4/Mn/SiO2 Catalyst
Citation
Korean Journal of Chemical Engineering, v.28, no.11, pp 2142 - 2147
Pages
6
Indexed
SCIE
SCOPUS
KCI
Journal Title
Korean Journal of Chemical Engineering
Volume
28
Number
11
Start Page
2142
End Page
2147
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/167228
DOI
10.1007/s11814-011-0253-8
ISSN
0256-1115
1975-7220
Abstract
Reactor modeling for the oxidative coupling of methane over Na2WO4/Mn/SiO2 catalyst was addressed in the present study. The catalyst loading part was designed to be thicker than the inlet and outlet parts to reduce the rates of side reactions in the gas phase, and the optimal aspect ratio (L to D ratio) for no pressure drop and minimum side reactions was determined in experimental studies. Experiments were also conducted under a variety of operating conditions such as gas hourly space velocity (GHSV), CH4/O-2 ratio and reaction temperature, and partial least-squares model was applied to predict the performance of the reactor. The validity of the developed model was corroborated by the comparison with experimental data, and normalized parametric sensitivity analysis was carried out. Finally, the genetic algorithm (GA) was applied to determine the optimal conditions for maximum production of ethane and ethylene.
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