High-purity hydrogen production through sorption enhanced water gas shift reaction using K2CO3-promoted hydrotalcite

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초록

Sorption enhanced water gas shift (SEWGS) reaction is a process concept, which simultaneously carries out the gas phase water gas shift (WGS) reaction (CO + H2O <-> CO2 + H-2) and selective chemisorption of the byproduct CO2 from the gas phase reaction zone for direct production of essentially pure H-2 in a single unit operation. A packed bed sorber-reactor containing an admixture of a WGS catalyst and a CO2 chermisorbent is used in the process. The concept circumvents the thermodynamic limitation of the WGS reaction and enhances the rate of reaction for H-2 production. In this study, the SEWGS reaction concept was successfully demonstrated by both experiment and numerical simulation using K2CO3-promoted hydrotalcite as the CO2 sorbent. Numerical model simulations were also carried out to investigate the effects of various operating conditions of SEWGS reaction on the process performance. In general, higher H2O/CO feed ratio, higher fraction of sorbent (chemisorbent ratio in the sorber-reactor), and lower operating temperature favor both H-2 productivity and CO conversion. Higher reaction pressure increases H-2 productivity but decreases CO conversion. (C) 2012 Elsevier Ltd. All rights reserved.

키워드

CO2 adsorptionHydrogen productionSorption enhanced water gas shift reactionK2CO3-promoted hydrotalcitePacked bedNumerical analysisCELL-GRADE H-2CARBON-DIOXIDECOMPRESSED CO2METHANECHEMISORPTIONPERFORMANCEADSORPTIONKINETICSCAPTUREBIOMASS
제목
High-purity hydrogen production through sorption enhanced water gas shift reaction using K2CO3-promoted hydrotalcite
저자
Jang, Hyun MinLee, Ki BongCaram, Hugo S.Sircar, Shivaji
DOI
10.1016/j.ces.2012.02.015
발행일
2012-05-07
유형
Article
저널명
Chemical Engineering Sciences
73
페이지
431 ~ 438