Back to Search Start Over

Enrichment and Separation of Methane Gas by Vacuum Pressure Swing Adsorption

Authors :
Tao Zhu
Ruonan Wang
Xing Zhang
Yiwei Han
Wenjing Bian
Yan Ma
Ming Xue
Source :
Adsorption Science & Technology, Vol 2021 (2021)
Publication Year :
2021
Publisher :
SAGE Publications, 2021.

Abstract

In China, owing to the methane concentration being below 0.75%, the coal ventilation air methane (CVAM) is usually emitted directly into the atmosphere, rather than utilized, which not only causes huge waste of energy but also exerts potential hazards to the greenhouse effect. It is important and practicable to save costs of development and investment by simulating enrichment and separation of CVAM with an aim to improve the efficiency and recovery of adsorption separation. Above all, it will have important practical significance to the development of adsorption separation. In this paper, the experiment of the pressure swing adsorption process was carried out on double towers built by our laboratory, and the Aspen Adsorption was used to simulate the process. The effect of the operation parameters on the desorbed methane concentration was studied by altering the feed concentration, the adsorbed pressure, and adsorbed and desorbed time. The results of simulation and experiment are basically consistent. The ratio of methane was decreased following the increasing concentration of the feed. The optimum adsorption pressure and time were found to be 210 kPa and 120 s, respectively. The optimum desorption times of experiment and simulation were 150 s and 120 s, respectively. Because there was a man-made 30 s time lag between the experiment and simulation to protect the vacuum pump, the results show that the simulation and experiment were matched well. Therefore, we can make use of Aspen Adsorption to design separation and enrichment of CVAM, providing theoretical and practical guidance for the gas separation and saving resources and energy.

Details

Language :
English
ISSN :
02636174 and 20484038
Volume :
2021
Database :
Directory of Open Access Journals
Journal :
Adsorption Science & Technology
Publication Type :
Academic Journal
Accession number :
edsdoj.0ee30b2f80fb48338a35a00b85c9ab0d
Document Type :
article
Full Text :
https://doi.org/10.1155/2021/5572698