Collateral hydrogenation over proton-conducting Ni/BaZr0.85Y0.15O3-: δ catalysts for promoting CO2 methanation

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Abstract

Despite the importance of CO2 methanation for eco-friendly carbon-neutral fuel recycling, the current technologies, relying on catalytic hydrogenation over metal-based catalysts, face technological and economical limitations. Herein, we employ the steam hydrogenation capability of proton conductors to achieve collateral CO2 methanation over the Ni/BaZr0.85Y0.15O3-δ catalyst, which is shown to outperform its conventional Ni/Al2O3 counterpart in terms of CH4 yield (8% higher) and long-term stability (3% higher for 150 h) at 400 °C while exhibiting a CH4 selectivity above 98%. Moreover, infrared and X-ray photoelectron spectroscopy analyses reveal the appearance of distinct mobile proton-related OH bands during the methanation reaction.

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Choi, S., Choi, S. M., Yoon, K. J., Son, J. W., Lee, J. H., Kim, B. K., … Kim, H. (2018). Collateral hydrogenation over proton-conducting Ni/BaZr0.85Y0.15O3-: δ catalysts for promoting CO2 methanation. RSC Advances, 8(56), 32095–32101. https://doi.org/10.1039/c8ra06226a

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