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Research on Reactor Design in Propane Dehydrogenation Process
TANG Rongqing 1,YANG Manxia 2,YANG Lina 2 *,LIANG Tingting 2,JIN Mingxin 2
1.Mining Technology School,Liaoning Technical University,Huludao,125105;Business Administration School,Liaoning Technical University,Huludao,125105;Mining Technology School,Liaoning Technical University,Huludao,125105;Mining Technology School,Liaoning Technical University,Huludao,125105;Mining Technology School,Liaoning Technical University,Huludao,125105
2.
*Correspondence author
#Submitted by
Subject:
Funding: none
Opened online:12 March 2020
Accepted by: none
Citation: TANG Rongqing,YANG Manxia,YANG Lina.Research on Reactor Design in Propane Dehydrogenation Process[OL]. [12 March 2020] http://en.paper.edu.cn/en_releasepaper/content/4751033
 
 
The success of chemical technology process development depends to a large extent on the control level and control ability of the temperature, concentration, residence time and temperature distribution of the fluid in the reactor, and the distribution of residence time. The research project of the propane dehydrogenation process is mainly based on the Catofin process, and the Catofin process is improved by combining the catalyst and operating conditions of the Oleflex process. The main reactors involved in this process are propane dehydrogenation reactors. This paper uses Aspen Plus, Comsol, SW6 and other computer software to select the structure of its core equipment, and details the manufacturing process of the reactor to determine the reaction The volume and approximate structure of the reactor achieve the control requirements of chemical process parameters such as temperature distribution, concentration distribution, and reaction time, so that product quality and performance can be guaranteed. Finally, the reactor design specification is listed in a table.
Keywords:Chemical engineering; propane dehydrogenation; reactor design;design manual
 
 
 

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