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Mechanochemical synthesis of a robust cobalt-based metal–organic framework for adsorption separation methane from nitrogen.

Authors :
Zhang, Chenghui
Chen, Yongwei
Wu, Houxiao
Li, Huilin
Li, Xinyuan
Tu, Shi
Qiao, Zhiwei
An, Dongli
Xia, Qibin
Source :
Chemical Engineering Journal. 2022 Part 2, Vol. 435, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

[Display omitted] • Rapid mechanochemical synthesis of Co(AIP)(BPY) 0.5 at the gram scale. • Co(AIP)(BPY) 0.5 –25 with CH 4 uptake of 1.03 mmol/g and CH 4 /N 2 selectivity of 7.3. • The separation is due to the difference in geometrical structures of CH 4 and N 2. Efficient capture dilute methane (CH 4) from nitrogen (N 2) is of significant importance in both environment and economical aspects. However, CH 4 /N 2 separation is still a great challenge in gas separation field limited by their close physical properties. Herein, we developed the mechanochemical synthesis of a cobalt-based pillar-layer metal–organic framework, Co(AIP)(BPY) 0.5 , for adsorption separation of CH 4 /N 2 mixture. This synthetic method allowed Co(AIP)(BPY) 0.5 accessible rapidly and sustainably at the gram scale. By varying the grinding time, a series of mechanochemically synthesized Co(AIP)(BPY) 0.5 products were obtained and CO 2 adsorption measurements confirmed that Co(AIP)(BPY) 0.5 –25 obtained by grinding for 25 min had the highest porosity. Then CH 4 /N 2 adsorption and separation of the resulting Co(AIP)(BPY) 0.5 –25 was studied. CH 4 and N 2 uptakes of Co(AIP)(BPY) 0.5 –25 were 1.03 and 0.26 mmol/g at 298 K and 5 bar, showing preferential adsorption of CH 4 over N 2 and the CH 4 /N 2 selectivity with 7.3. Meanwhile, the excellent potential separation ability of CH 4 /N 2 mixtures with different concentrations on Co(AIP)(BPY) 0.5 –25 was confirmed by simulated breakthrough experiments. Molecular simulations revealed that spheroidal CH 4 molecules were located in the center of the pores while most of linear N 2 molecules were only distributed near the walls of the pores due to the difference in geometrical structures. This work provides an example of rapid mechanochemical synthesis of Co(AIP)(BPY) 0.5 within short time for separating CH 4 /N 2 mixture. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13858947
Volume :
435
Database :
Academic Search Index
Journal :
Chemical Engineering Journal
Publication Type :
Academic Journal
Accession number :
155427207
Full Text :
https://doi.org/10.1016/j.cej.2021.133876