Magnesium-Promoted Catalytic Stability of the Cu/ZnO/ZrO2/Al2O3-MgO Catalyst in CO2 Hydrogenation to Methanol

Authors
Kim, Seong-ryeChoi, Ye-NaPark, KwanghoLee, Hong-GyungLee, Kyung RokPark, HongjinYoon, SunghoLee, Kwan YoungJung, Kwang-Deog
Issue Date
2025-03
Publisher
American Chemical Society
Citation
Industrial & Engineering Chemistry Research, v.64, no.11, pp.5903 - 5911
Abstract
A Mg-promoted Cu/ZnO/ZrO2/Al2O3 catalyst (CZZAM) was developed for methanol synthesis via CO2 hydrogenation. Incorporating magnesium into the catalyst precursor improved the durability, addressing stability issues in our previously reported Cu/ZnO/ZrO2/Al2O3 (CZZA) catalysts. Comparative evaluations showed that CZZAM outperforms commercial Cu/ZnO/Al2O3 (CZA) and CZZA catalysts, achieving a maximum methanol space-time yield of 0.99 gMeOH<middle dot>gcat -1<middle dot>h-1 with a methanol selectivity of 50.6% and a yield of 12.7% under 24,000 mL<middle dot>gcat -1<middle dot>h-1 at 260 degrees C and 5 MPa. In a 60 h test, CZZAM exhibited only a 2.8% decrease in methanol productivity compared to over 9 to 10% declines for CZA and CZZA. Characterizations revealed that Mg addition enhanced Cu nanoparticle dispersion and structural stability. These findings demonstrate that Mg incorporation effectively enhances activity and stability in Cu/ZnO/ZrO2/Al2O3 catalysts for CO2 hydrogenation to methanol.
Keywords
CU; PERFORMANCE; MALACHITE; INSIGHTS
ISSN
0888-5885
URI
https://pubs.kist.re.kr/handle/201004/152098
DOI
10.1021/acs.iecr.4c04518
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KIST Article > Others
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