An Integrated Carbon Dioxide and Methanation Process

Xiaochen Zhang, Mengzhu Li, Xingwu Liu, Ang Li, Yuchen Deng, Mi Peng, Yu Zhang,Charlotte Vogt,Matteo Monai, Junxian Gao,Xuetao Qin, Yao Xu, Qiaolin Yu,Meng Wang, Guofu Wang, Zheng Jiang, Xiaodong Han, Casper Brady, Wei-Xue Li,Wu Zhou,Jin-Xun Liu, Bingjun Xu,Bert M. Weckhuysen,Ding Ma

CCS CHEMISTRY(2023)

引用 13|浏览11
暂无评分
摘要
Reducing the ever-growing level of CO2 in the atmosphere is critical for the sustainable development of human society in the context of global warming. Integration of the capture and upgrading of CO2 is, there-fore, highly desirable since each process step is costly, both energetically and economically. Here, we report a CO2 direct air capture (DAC) and fixation process that produces methane. Low concentrations of CO2 (similar to 400 ppm) in the air are captured by an aqueous solution of sodium hydroxide to form carbonate. The carbonate is subsequently hydrogenated to methane, which is easily separated from the reaction system, catalyzed by TiO2-supported Ru in the aqueous phase with a selectivity of 99.9% among gas-phase pro-ducts. The concurrent regenerated hydroxide, in turn, increases the alkalinity of the aqueous solution for further CO2 capture, thereby enabling this one-of-its-kind continuous CO2 capture and methanation process. Engineering simulations demonstrate the energy feasibility of this CO2 DAC and methanation process, highlighting its promise for potential large-scale applications.
更多
查看译文
关键词
CO2 capture and methanation process,sodium hydroxide,carbonate,Ru/TiO2,catalytic mechanism,CO2 activation and hydrogenation
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要