甲烷化
吸附
替代天然气
吸附
沸石
甲烷
催化作用
空间速度
化学
化学工程
材料科学
合成气
有机化学
工程类
选择性
作者
Laura Gómez,Isabel Casabona Martínez,M.V. Navarro,Tomás García,Ramón Murillo
标识
DOI:10.1016/j.cej.2022.135842
摘要
Sorption-enhanced methanation (SEM) is one of the solutions proposed for the production of high quality synthetic natural gas (SNG) under mild conditions of temperature and pressure. In this novel process, the methanation reaction is performed in the presence of an adsorbent that retains the water produced as by-product. The SEM potential of a Rh-based catalyst and a zeolite 5A adsorbent has been demonstrated for both CO and CO 2 hydrogenation. Pure CH 4 production was possible operating at 275 °C and atmospheric pressure under sorption-enhanced CO 2 methanation conditions for space velocities of up to 514 ml CO2 /g cat /h. For sorption-enhanced CO methanation, CH 4 purities of 86 vol% were achieved under the same operating conditions but at lower space velocity (440 ml CO /g cat /h). Finally, SEM/regeneration cycles were performed for a feed gas containing CO and CO 2 , achieving stable performance throughout the cycles and a constant CH 4 purity of about 60 vol% for the operating conditions chosen.
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