A new hydrogenation-coupling approach for supra-equilibrium conversion in a water–gas shift reaction: Simultaneous hydrogen generation and chemical storage — Michael Ho Kei Lee (2023) | RDL Network
A new hydrogenation-coupling approach for supra-equilibrium conversion in a water–gas shift reaction: Simultaneous hydrogen generation and chemical storage
Article 2023 en
Authors
ML
Michael Ho Kei Lee
HY
Hang Yin
WK
Wasim Ullah Khan
Abstract
1 min read
This work reports a practical system of hydrogenation-coupled water–gas shift reaction (HC-WGSR) for simultaneous hydrogen production and storage. The performance of the HC-WGSR system was predicted through thermodynamic simulation. The proof-of-concept tandem water–gas shift and propene hydrogenation strategy was successfully demonstrated using a bifunctional catalyst. The hydrogen produced from the WGSR was successfully stored in propane simultaneously, and the overall CO conversion of nearly 100% overcame the equilibrium limitation of the WGSR over a wide range of space velocities (3000 - 6000 h−1) at 200 °C and 1 bar. This study demonstrated that the in situ removal/storage of H2 using the hydrogenation-coupling approach is promising even in a CO2-rich environment (20% CO2). The new approach shall see a great opportunity in using organic hydrogen carriers, e.g., benzene, toluene, N-ethylcarbazole, to expand the industrial applications, underpinning the global supply chain for hydrogen energy.
Miguel A. Rivero‐Crespo, Marta Mon, Jesús Ferrando‐Soria, Christian W. Lopes, Mercedes Boronat, Antonio Leyva‐Pérez, Avelino Avelino, Juan Carlos Hernández‐Garrido, Miguel López‐Haro, José J. Calvino, Enrique V. Ramos‐Fernández, Donatella Armentano, Emilio Pardo
Miguel A. Rivero‐Crespo, Marta Mon, Jesús Ferrando‐Soria, Christian W. Lopes, Mercedes Boronat, Antonio Leyva‐Pérez, Avelino Avelino, Juan Carlos Hernández‐Garrido, Miguel López‐Haro, José J. Calvino, Enrique V. Ramos‐Fernández, Donatella Armentano, Emilio Pardo
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