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September 20, 2024ChemCatChem79 citationsOpen Access

Low Temperature Sabatier CO2 Methanation

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CMClément Molinet‐ChinagliaSSSeema ShafiqPSPhilippe Serp

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Abstract

Abstract The CO 2 methanation reaction, or Sabatier reaction, is experiencing renewed interest in the context of large‐scale recycling of point CO 2 emissions, leading to the power‐to‐gas technology. The reaction represents a flexible route to transform CO 2 into methane by hydrogenation with (green) dihydrogen. This exothermic transformation takes place at a reasonable rate at temperatures above 200 °C and is directed to the targeted product at low temperatures. The CO 2 methanation nevertheless remains kinetically limited due to the chemical stability of CO 2 and the high bond dissociation energy for C═O in CO 2 . Therefore, the current urgent demand is for the development of catalysts and associated processes with superior activity for CO 2 activation at low temperatures. This critical review aims to overview the state of the art of this low‐temperature technology using thermal, plasma and photo‐assisted catalysis. We summarize research advances around low‐temperature CO 2 methanation, focusing on catalyst formulations (metal, supports and promoters), reaction mechanisms and suitable activation processes. We discuss each of these critical aspects of the technology and identify the main challenges and opportunities for low temperature (≤200 °C) CO 2 methanation.

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Molinet‐Chinaglia et al. (2024) studied this question.

synapsesocial.com/papers/68e57c24b6db64358751b830https://doi.org/10.1002/cctc.202401213
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