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April 28, 2026ChemSusChem1 citations

Direct Conversion of Metal Carbonates and Bicarbonates to Methanol Over a Cu/ZnO/Al 2 O 3 Catalyst

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CKChristopher J. KochRSRaktim SenAAAnushan Alagaratnam

Key Points

  • The study aims to explore the direct conversion of metal carbonates to methanol using a specific catalyst at mild temperatures.
  • Utilized Cu/ZnO/Al2O3 catalyst for hydrogenation process.
  • Carried out experiments at 200°C in the presence of ethylene glycol.
  • Investigated various alkali carbonates and bicarbonate salts sourced from Direct Air Capture and flue gas.
  • Achieved methanol yields of up to 95% with the proposed catalyst.
  • Facilitated the hydrogenation of sodium and potassium carbonates effectively under mild conditions.
  • Demonstrated the potential of using captured CO2 from air and flue gas for methanol production.

Abstract

The utilization of metal carbonates to produce directly valuable carbon feedstocks remains a major challenge, particularly under mild operating conditions. Herein, we report the elusive conversion of inorganic metal carbonates, such as sodium and potassium carbonates, to methanol in a one‐step process with molecular hydrogen over a heterogeneous Cu/ZnO/Al 2 O 3 catalyst. The hydrogenation occurs effectively at a relatively mild temperature of 200°C and proceeds in presence of ethylene glycol in the liquid phase with methanol yields of up to 95%. Alkali carbonates/bicarbonate salts obtained by capturing CO 2 from ambient air (Direct Air Capture, DAC) and flue gas CO 2 with aqueous alkali media also undergo facile hydrogenation to methanol.

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Cite This Study

Koch et al. (2026) studied this question.

synapsesocial.com/papers/69f04e7d727298f751e72594https://doi.org/10.1002/cssc.70665
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