globalchange  > 气候变化事实与影响
DOI: 10.1016/j.apcata.2019.01.005
WOS记录号: WOS:000458938700004
论文题名:
Highly selective conversion of CO2 to light olefins via Fischer-Tropsch synthesis over stable layered K-Fe-Ti catalysts
作者: Wang, Xu; Wu, Dakai; Zhang, Jianli; Gao, Xinhua; Ma, Qingxiang; Fan, Subing; Zhao, Tian-Sheng
通讯作者: Zhang, Jianli ; Zhao, Tian-Sheng
刊名: APPLIED CATALYSIS A-GENERAL
ISSN: 0926-860X
EISSN: 1873-3875
出版年: 2019
卷: 573, 页码:32-40
语种: 英语
英文关键词: CO2 hydrogenation ; Layered K-Fe-Ti catalyst ; Light olefins ; Olefin adsorption
WOS关键词: CLIMATE-CHANGE ; PORE-SIZE ; HYDROCARBON SELECTIVITY ; PARTICLE-SIZE ; LIQUID FUELS ; HYDROGENATION ; POTASSIUM ; PROMOTION ; EVOLUTION ; IMPACT
WOS学科分类: Chemistry, Physical ; Environmental Sciences
WOS研究方向: Chemistry ; Environmental Sciences & Ecology
英文摘要:

K-Fe-Ti layered metal oxides (LMO) were prepared using solid-state reaction followed by in situ reduction and applied in CO2 hydrogenation to light olefins via Fischer-Tropsch synthesis process. The results showed that the molar ratio of K/Fe/Ti had dramatic effects on the textural and structural properties of the LMO and the catalytic performance. Layered structure K-Fe-Ti exhibited high olefin selectivity and stability for CO2 hydrogenation. The light olefin selectivity reached approximately 60% with an olefin/paraffin value of 7.3 over 0.8K-2.4Fe-1.3Ti, and the exfoliated LMO through acid treatment was found to weaken the interaction between Fe and Ti. This enabled the reduction and activation of iron oxides easier to form iron carbide species and promoted a shift from the reverse water gas shift reaction regime to hydrocarbon synthesis regime, contributing to higher hydrocarbons while lower CO.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/131808
Appears in Collections:气候变化事实与影响

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作者单位: Ningxia Univ, State Key Lab High Efficiency Utilizat Coal & Gre, Yinchuan 750021, Peoples R China

Recommended Citation:
Wang, Xu,Wu, Dakai,Zhang, Jianli,et al. Highly selective conversion of CO2 to light olefins via Fischer-Tropsch synthesis over stable layered K-Fe-Ti catalysts[J]. APPLIED CATALYSIS A-GENERAL,2019-01-01,573:32-40
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