4.8 Article

H2 pressure swing adsorption for high pressure syngas from an integrated gasification combined cycle with a carbon capture process

Journal

APPLIED ENERGY
Volume 183, Issue -, Pages 760-774

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.apenergy.2016.09.038

Keywords

Hydrogen; Syngas; PSA; IGCC; Activated carbon; Zeolite LiX

Funding

  1. R&D Convergence Program of the MSIP (Ministry of Science, ICT and Future Planning)
  2. NST (National Research Council of Science & Technology) of the Republic of Korea [CRC-14-1-KRICT]

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The integrated gasification combined cycle (IGCC) process, possessing high efficiency and environmental advantages, produces H-2-rich syngas at high pressures (30-35 bar) after capturing CO2. Since the syngas pressure is very high for conventional PSA processes, development of an efficient PSA process at the pressure conditions is required for H-2 production. In this study, the H-2 PSA process for IGCC syngas was developed experimentally and theoretically. Breakthrough and PSA experiments using activated carbon or activated carbon/zeolite LiX were performed at 25-35 bar by using a five-component hydrogen mixture (H-2:CO:N-2:CO2:Ar = 88:3:6:2:1 mol%) as a simulated syngas. The overall PSA performance was evaluated in terms of the purity, recovery and productivity of H-2 product. According to the results from using single or layered beds, the two-bed PSA process produced 99.77-99.95% H-2 with 73.30-77.64% recovery experimentally. A four-layered bed PSA at 35 bar was able to produce 99.97%-purity H-2 with 79% recovery, and it contained Ar and N-2 impurities. The quality of tail gas from the PSA process could be used for the gas turbine without losing H-2 and CO. A rigorous mathematical model that included mass, energy, and momentum balances was employed to elucidate the dynamic behaviors and separation performance of the adsorption bed and PSA process. (C) 2016 Elsevier Ltd. All rights reserved.

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