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PMID: 32819228 Published · ppublish English Journal Article

CFD Modeling of Methanol to Light Olefins in a Sodalite Membrane Reactor using SAPO-34 Catalyst with In Situ Steam Removal.

Combinatorial chemistry & high throughput screening ·Vol. 24 ·No. 4 ·2021-00-00 ·页码 559-569

Aghaeinejad-Meybodi A, Mousavi SM, Shahabi AA, Kakroudi MR

Abstract

In this work, the performance of a sodalite membrane reactor (MR) in the conversion of methanol to olefins (MTO process) was evaluated for ethylene and propylene production with in situ steam removal using 3-dimensional CFD (computational fluid dynamic) technique. Numerical simulation was performed using the commercial CFD package COMSOL Multiphysics 5.3. The finite element method was used to solve the governing equations in the 3- dimensional CFD model for the present work. In the sodalite MR model, a commercial SAPO-34 catalyst in the reaction zone was considered. The influence of key operation parameters, including pressure and temperature on methanol conversion, water recovery, and yields of ethylene, propylene, and water was studied to evaluate the performance of sodalite MR. The local information of component concentration for methanol, ethylene, propylene, and water was obtained by the proposed CFD model. Literature data were applied to validate model results, and a good agreement was attained between the experimental data and predicted results using CFD model. Permeation flux through the sodalite membrane was increased by an increase of reaction temperature, which led to the enhancement of water stream recovered in the permeate side. The CFD modeling results showed that the sodalite MR in the MTO process had higher performance in methanol conversion compared to the fixed-bed reactor (methanol conversion of 97% and 89% at 733 K for sodalite MR and fixed-bed reactor, respectively).

Keywords
CFD modeling DME MTOS Methanol to olefins membrabe reactor sodalite membrane
MeSH 主题词
Alkenes/chemical synthesis Catalysis Computer Simulation Ethylenes/chemical synthesis Hot Temperature Membranes, Artificial Methanol/chemistry Models, Chemical Steam Surface Properties Zeolites/chemistry
化学物质
Alkenes Ethylenes Membranes, Artificial SAPO-34 Steam Zeolites ethylene propylene Methanol
作者与单位
共 4 位作者,点击展开单位 / ORCID
Aghaeinejad-Meybodi Abbas
Chemical Engineering Department, Faculty of Engineering, Urmia University, Urmia, Iran.
Mousavi Seyed Mahdi
Department of Applied Chemistry, Faculty of Chemistry, University of Kashan, Kashan, Iran.
Shahabi Ali Asghar
Faculty of Chemical Engineering, Sahand University of Technology, Tabriz, Iran.
Kakroudi Mohammad Rostampour
Department of Chemistry, University of Central Florida, United States.
Article Info
Journal
Combinatorial chemistry & high throughput screening
Abbr.
Comb Chem High Throughput Screen
ISSN
1875-5402
Published
2021-00-00
页码
559-569
Language
English
Country/Region
United Arab Emirates
NLM ID
9810948
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