Influences of fly ashes on the performance of dual function materials during integrated CO2 capture and methanation
编号:104 访问权限:仅限参会人 更新:2023-03-23 14:38:24 浏览:239次 口头报告

报告开始:2021年08月09日 22:45(Asia/Shanghai)

报告时间:15min

所在会场:[P] 大会报告 [2] 分会场一:反应器设计及系统优化

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摘要
CO2 capture from large, concentrated emission sources can efficiently reduce CO2 emission. A new chemical looping technology has been developed for CO2 capture from coal-fired power plants and in-situ conversion into CH4, also known as the integrated CO2 capture and methanation (ICCM) process. It is realized via cycling dual function materials (DFMs) between the CO2 capture reactor and methanation reactor, in which the DFMs consists of Na2CO3 sorbent coupled with catalytic Ru component on Al2O3 support. However, several pollutions carried by flue gas would cause significant issues when combining the ICCM with coal-fired power plants. In this work, we investigated the effect of fly ashes on the performance of dual function materials (DFMs). It was found that the presence of fly ashes decreased the CH4 selectivity in methanation steps, from 86.6% to 66.6% and 57.8%, and promoted CO production. There was also an accelerated decline in the DFMs stability. By characterization, the fly ashes were adhered to the DFMs surface, causing pollution and agglomeration of Ru particles during the cyclic methanation steps. Thus, it presented a decreased activity for carbonate activation and CO hydrogenation, leading to the release of adsorbed CO during the methanation steps. In addition, the roles of SiO2 and Fe element components in fly ashes were also identified, which were responsible for the synthesized influence of fly ashes.
关键词
Integrated CO2 capture and methanation,In-situ hydrogenation,Dual function materials,Fly ashes,Selectivity,Reactivity
报告人
刘道诚
博二 东南大学

稿件作者
陈良勇 东南大学
刘道诚 东南大学
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    04月06日

    2023

    04月08日

    2023

  • 04月04日 2023

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  • 04月15日 2023

    注册截止日期

  • 04月30日 2023

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