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A System for the Combined Carbon Capture and Utilization to Produce Renewable Methanol from Biogas
Coupling of biogas upgrading and power‐to‐X is challenging due to the intermittent cheap energy availability. A system was designed that overcomes the technical challenges in this coupling. This is possible by alternating biogas upgrading and methanol synthesis in a reactor operating both as sorption‐enhanced synthesis reactor and as upgrading unit by pressure swing adsorption. It was observed that this concept is feasible in both fixed‐ and fluidized‐bed reactors, and the potential for economic performance improvement was quantified in approximately 20 % increase of the internal rate of return.
A System for the Combined Carbon Capture and Utilization to Produce Renewable Methanol from Biogas
Coupling of biogas upgrading and power‐to‐X is challenging due to the intermittent cheap energy availability. A system was designed that overcomes the technical challenges in this coupling. This is possible by alternating biogas upgrading and methanol synthesis in a reactor operating both as sorption‐enhanced synthesis reactor and as upgrading unit by pressure swing adsorption. It was observed that this concept is feasible in both fixed‐ and fluidized‐bed reactors, and the potential for economic performance improvement was quantified in approximately 20 % increase of the internal rate of return.
A System for the Combined Carbon Capture and Utilization to Produce Renewable Methanol from Biogas
Moioli, Emanuele (Autor:in) / Schildhauer, Tilman (Autor:in)
Chemie Ingenieur Technik ; 96 ; 826-839
01.06.2024
14 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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