Highly efficient oxidation of methane into methanol over Ni-promoted Cu/ZSM-5

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Abstract

Direct functionalization of methane in natural gas is of paramount importance but faces tremendous challenges. We reported a nickel-modified copper zeolite catalyst for the selective oxidation of methane into methanol. Using H2O2 as an oxidant in the liquid phase at 80 °C, Cu1Ni0.75/ZSM-5 catalyst presented a relatively high methanol yield of 82 162 μmol gcat−1 h−1 (with a methanol selectivity of ∼74%). Combining series of designed experiments and thorough characterization analysis, including electron microscopy, X-ray photoelectric spectroscopy, Fourier transform infrared reflection as well as in situ diffuse reflectance infrared Fourier transform spectroscopy, abundant CuI active sites were found on Ni-Promoted Cu/ZSM-5, differing from the dominating CuII active sites over Cu/ZSM-5. CuI active sites had an excellent ability to promote CH4 adsorption, CH4 activation and CH3OH generation compared to CuII active sites. This work elucidates a constellation of insightful and potent perspectives for further improvement of metal-zeolite catalysts for the direct oxidation of methane to methanol.

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Shen, Z., Li, W., Jin, J., Lu, Z., Wang, L., Jiang, Y., & Yuan, L. (2025). Highly efficient oxidation of methane into methanol over Ni-promoted Cu/ZSM-5. RSC Advances, 15(11), 8244–8252. https://doi.org/10.1039/d5ra01115a

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