Investigation of the Kinetics of Methanation of a Post-Coelectrolysis Mixture on a Ni/Czp Oxide Catalyst

23 Pages Posted: 15 Mar 2024

See all articles by Anne-Cécile ROGER

Anne-Cécile ROGER

affiliation not provided to SSRN

Audrey Waldvogel

affiliation not provided to SSRN

Andrea Fasolini

University of Bologna

Francesco Basile

University of Bologna

Sébastien Thomas

affiliation not provided to SSRN

Abstract

The use of synthetic natural gas (SNG) as a plug-and-play fuel coming from renewables can help to overcome the limitations given by the intermittency of renewable energy. A way to implement the production of SNG pass through the co-electrolysis of CO2 to a mixture of hydrogen, carbon monoxide and carbon dioxide, steam and small amounts of methane, followed by CO and CO2 methanation. The presence of different reactants and processes requires the comprehension and quantification of the kinetics of the reactions involved with the aim of optimizing methanation. In this work a kinetic model that considers both the direct CO2 methanation and the indirect RWGS+CO methanation pathways has been developed over a Ni(10%wt)/Ce0.33Zr0.63Pr0.04O2. The kinetic study made it possible to understand the influence of the reactants and products on the reactions through the calculation of reaction rates. This allowed to test, by linearization, the models found in the literature and their adjustment permitted to calculate sixteen kinetic parameters (activation energies, heats of adsorption and pre-exponential factors) present in the rate laws of methanation of CO2, CO and the Reverse Water Gas Shift reaction. The models then made it possible to simulate the evolution of partial flow rates in an isothermal plug flow reactor and were compared to experimental data.

Keywords: Power To GasMethanationkineticsheterogeneous catalysisco-electrolysis

Suggested Citation

ROGER, Anne-Cécile and Waldvogel, Audrey and Fasolini, Andrea and Basile, Francesco and Thomas, Sébastien, Investigation of the Kinetics of Methanation of a Post-Coelectrolysis Mixture on a Ni/Czp Oxide Catalyst. Available at SSRN: https://ssrn.com/abstract=4760435 or http://dx.doi.org/10.2139/ssrn.4760435

Anne-Cécile ROGER (Contact Author)

affiliation not provided to SSRN ( email )

Audrey Waldvogel

affiliation not provided to SSRN ( email )

Andrea Fasolini

University of Bologna ( email )

Francesco Basile

University of Bologna ( email )

Sébastien Thomas

affiliation not provided to SSRN ( email )

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