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March 26, 2026ACS Catalysis4 citations

High-Yield Production of Light Olefins from CO 2 Hydrogenation over Co-Promoted Na–FeMn Catalysts

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AMAyaka MiuraTLTeng LiLZLiang Zhang

Key Points

  • The aim is to enhance the conversion of CO2 to light olefins using cobalt-promoted Na–FeMn catalysts.
  • Utilized cobalt-promoted Na–FeMn catalysts for CO2 hydrogenation
  • Employed in situ X-ray diffraction and diffuse reflectance infrared spectroscopy to monitor reactions
  • Analyzed the influence of cobalt on CO2 conversion and olefin yield
  • Achieved CO2 conversion of 59.6% with cobalt promotion
  • Improved light olefin yield of 22.33% with selectivity of 39.6%
  • Cobalt acts as a kinetic promoter, enhancing CO formation through the RWGS reaction

Abstract

Efficiently converting CO2 into high-yield light olefins via the CO2-modified Fischer–Tropsch synthesis (CO2–FTS) over iron-based catalysts remains a key challenge. Here, we report cobalt-promoted hydrogenation of CO2 to light olefins over Na–FeMn catalysts. Incorporation of cobalt enhances the CO2 conversion (59.6%) by accelerating CO formation via the reverse water–gas shift (RWGS) reaction, thereby increasing the availability of CO for subsequent FTS. Although cobalt increases the overall hydrogenation activity, the Na–FeMn framework maintains olefin formation pathways, leading to an improved light olefin yield of 22.33% with a selectivity of 39.6%. In situ X-ray diffraction (in situ XRD) and in situ diffuse reflectance infrared Fourier transform spectroscopy (in situ DRIFTS) reveal the dynamic phase evolution of the catalyst and the transformation of surface intermediates under reaction conditions. The results indicate that cobalt primarily acts as a kinetic promoter that facilitates CO generation and intermediate turnover. This study clarifies the promotional role of cobalt in iron-based catalysts and provides insights into optimizing CO2 hydrogenation toward light olefins.

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Cite This Study

Miura et al. (2026) studied this question.

synapsesocial.com/papers/69c4cd98fdc3bde44891a278https://doi.org/10.1021/acscatal.6c00962
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