2022
DOI: 10.1016/j.enconman.2022.115999
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Novel design of pressure swing adsorption using compact plates for adsorption heat recuperation of CO2 capture in biomethane upgrading process

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Cited by 20 publications
(2 citation statements)
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“…The ultimate goal of PSA technology now is to capture CO 2 with minimal energy consumption. Based on a traditional PSA design, Ammar et al used a compact plate to transfer the heat generated during the CO 2 capture process to the desorption process, ensuring a more effective heat dissipation from the adsorption bed and reducing the energy required for the regeneration steps [57]. However, in the PSA process, the partial pressure of the CO 2 desorption is close to the ambient pressure and the absorption pressure can reach at least 7 bar, which means that the feedstock needs to be compressed, causing additional energy consumption [58].…”
Section: Pressure Swing Adsorptionmentioning
confidence: 99%
“…The ultimate goal of PSA technology now is to capture CO 2 with minimal energy consumption. Based on a traditional PSA design, Ammar et al used a compact plate to transfer the heat generated during the CO 2 capture process to the desorption process, ensuring a more effective heat dissipation from the adsorption bed and reducing the energy required for the regeneration steps [57]. However, in the PSA process, the partial pressure of the CO 2 desorption is close to the ambient pressure and the absorption pressure can reach at least 7 bar, which means that the feedstock needs to be compressed, causing additional energy consumption [58].…”
Section: Pressure Swing Adsorptionmentioning
confidence: 99%
“…The considerable pollution in our planet's environment, including water and atmosphere, endangers our society [1,2]. The catastrophic climate breakdown rising from CO2 emission exacerbates the atmospheric CO2 concentration [3,4]. According to the Paris Agreement, Negative Emission Technologies (NETs) have been considered to diminish CO2 emissions [5].…”
Section: Introductionmentioning
confidence: 99%