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周桂林

教授    硕士生导师

个人信息 更多+
  • 教师英文名称: Guilin Zhou
  • 教师拼音名称: ZGL
  • 电子邮箱:
  • 入职时间: 2006-07-03
  • 所在单位: 环境与资源学院
  • 学历: 博士研究生毕业
  • 办公地点: 新北区(科创园)
  • 性别: 男
  • 学位: 博士
  • 在职信息: 在岗
  • 主要任职: 催化理论与应用技术重庆高校市级重点实验室主任
  • 其他任职: 九三学社重庆市南岸区委员会副主委

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论文成果

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CoCe composite catalyst for the CH4/CO2 reforming reaction: synergistic effects between Co and Ce species

发布时间:2024-11-29
点击次数:

影响因子:
5.7
DOI码:
10.1016/j.joei.2023.101389
所属单位:
环境与资源学院
发表刊物:
Journal of the Energy Institute
项目来源:
重庆市科技局
关键字:
CH4/CO2 dry reforming (DRM);CoCe catalyst;Synergistic effects;Oxygen vacancy
摘要:
The greenhouse gases CH4 and CO2 can be use as feedstock to prepare syngas (CO + H2) by CH4/CO2 reforming reaction, and the syngas can be used to produce high value-added chemicals through Fischer-Tropsch reaction. That is, the CH4/CO2 reforming reaction can provide an effective way to rationally use CO2 and CH4. The CoCe catalysts were prepared by impregnation method and grinding method, respectively, and the physicochemical properties were characterized by H2-TPR, XRD, BET, Quasi in-situ XPS and CO2-TPD. The synergistic effects between Co and Ce species can promote the CH4 and CO2 molecules to be continuously and rapidly activated, so that the CoCe catalysts exhibited good catalytic activity for the CH4/CO2 reforming reaction. The preparation methods can affect the dispersion of the Co species and the thermal stability of the oxygen vacancies on the CoCe catalysts to affect catalytic activity. The impregnation method is conducive to the Co species dissolving into the CeO2 lattice to form oxygen vacancies with high thermal stability, and the Co species on the CeO2 surface were in a highly dispersed state, which can provide more stable catalytic activity centers. Thus, the catalysts prepared by impregnation method displayed superior catalytic performances for CH4/CO2 reforming reaction. And the CH4 and CO2 conversions can reach 43.4% and 29.0% at the reaction temperature of 600 °C, respectively.
第一作者:
Hongmei Xie
合写作者:
Na Liu,Juan Huang,Shuang Chen
论文类型:
源刊论文
通讯作者:
Guilin Zhou
学科门类:
工学
文献类型:
Journal Article
卷号:
111
页面范围:
101389
是否译文:
发表时间:
2023-12-01
收录刊物:
SCI
发布期刊链接:
https://doi.org/10.1016/j.joei.2023.101389