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Ni-doped Metal-Azolate Framework-6 derived carbon as a highly active catalyst for CO2conversion through the CO2hydrogenation reaction

Authors :
Murthy, Pradeep S.
Wilson, Liam
Zhang, Xingmo
Liang, Weibin
Huang, Jun
Source :
Carbon Capture Science & Technology; 20230101, Issue: Preprints
Publication Year :
2023

Abstract

A profound and accelerated solution towards mitigating atmospheric CO2levels and converting the CO2to useful fuels and chemicals, such as CO or CH4, would be to utilize and promote the catalytic CO2hydrogenation reaction. To optimize this process, high-performance catalysts and favorable conditions must be identified. This study incorporated Ni-doped MAF-6 (containing Zn, N and C) derived carbon-supported catalysts synthesized by in-situ impregnation. By varying the Ni loading amount (1-4 wt.%) and the pyrolysis temperature (600-900°C), this determined as to how the nanomaterial structures and interactions can tune the reaction performance. Based on BET, PXRD and XPS characterization tests, the carbon structure was porous with highly dispersed and embedded Ni generated by a strong interaction between Ni and Zn-N-C in the MAF-6-derived carbon material, especially as the increasing pyrolysis temperatures evaporated more Zn. From this, CO2hydrogenation catalytic tests were carried out at 500-800°C and 100 mL min−1flow at a H2: CO2ratio of 3:1. Based on the key structural and material properties, the MAF-64Ni,600catalyst (i.e., 4 wt.% Ni loading, 600°C pyrolysis) proved to be optimal, displaying 59% CO2conversion and 100% CO selectivity at 650°C. Most of the catalysts formed no CH4due to the low loading of Ni.

Details

Language :
English
ISSN :
27726568
Issue :
Preprints
Database :
Supplemental Index
Journal :
Carbon Capture Science & Technology
Publication Type :
Periodical
Accession number :
ejs62304516
Full Text :
https://doi.org/10.1016/j.ccst.2023.100104