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An Efficient Strategy for Electroreduction Reactor Outlet Fractioning into Valuable Products.


ABSTRACT: In this work, two industrial dual-step pressure swing adsorption (PSA) processes were designed and simulated to obtain high-purity methane, CO2, and syngas from a gas effluent of a CO2 electroreduction reactor using different design configurations. Among the set of zeolites that was investigated using Monte Carlo and molecular dynamics simulations, NaX and MFI were the ones selected. The dual-PSA process for case study 1 is only capable of achieving a 90.5% methane purity with a 95.2% recovery. As for case study 2, methane is obtained with a 97.5% purity and 95.3% recovery. Both case studies can produce CO2 with high purity and recovery (>97 and 95%, respectively) and syngas with a H2/CO ratio above 4. Although case study 2 allows methane to be used as domestic gas, a much higher value for its energy consumption is observed compared to case study 1 (64.9 vs 29.8 W h molCH4-1).

SUBMITTER: Bessa MCN 

PROVIDER: S-EPMC10251741 | biostudies-literature | 2023 Jun

REPOSITORIES: biostudies-literature

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An Efficient Strategy for Electroreduction Reactor Outlet Fractioning into Valuable Products.

Bessa Mariana C N MCN   Luna-Triguero Azahara A   Vicent-Luna Jose M JM   Carmo Paulo M O C PMOC   Tsampas Mihalis N MN   Ribeiro Ana Mafalda AM   Rodrigues Alírio E AE   Calero Sofia S   Ferreira Alexandre F P AFP  

Industrial & engineering chemistry research 20230526 22


In this work, two industrial dual-step pressure swing adsorption (PSA) processes were designed and simulated to obtain high-purity methane, CO<sub>2</sub>, and syngas from a gas effluent of a CO<sub>2</sub> electroreduction reactor using different design configurations. Among the set of zeolites that was investigated using Monte Carlo and molecular dynamics simulations, NaX and MFI were the ones selected. The dual-PSA process for case study 1 is only capable of achieving a 90.5% methane purity w  ...[more]

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