›› 2018, Vol. 3 ›› Issue (6): 48-54.

• 化学 • 上一篇    下一篇

FeOx掺杂对CeO2纳米晶催化甲烷选择氯氧化反应性能的影响

  

  1. (大理大学药学与化学学院,云南大理671000)
  • 收稿日期:2017-10-31 出版日期:2018-06-15 发布日期:2018-06-15
  • 作者简介:何洁丽,副研究员,博士,主要从事纳米催化材料、低碳烃类催化氧化研究.
  • 基金资助:

    国家自然科学基金资助项目(21403096;21563003);云南省教育厅科学研究基金资助项目(2015Z158);大理
    大学博士启动费资助项目(KYBS201413)

A Study on the Influence of FeOx Doping into CeO2 Nanocrystal on Selective Oxidative Chlorination
of Methane

  1. (College of Pharmacy and Chemistry, Dali University, Dali, Yunnan 671000, China)
  • Received:2017-10-31 Online:2018-06-15 Published:2018-06-15

摘要:

目的:探究FeOx掺杂对CeO2纳米晶的晶体结构和形貌,及甲烷氯氧化反应性能的影响。方法:样品晶体结构采用XRD
表征;形貌采用TEM和HRTEM表征;考察CeO2和FeOx-CeO2纳米棒不同反应温度时甲烷氯氧化反应性能,计算表观活化能。
结果:CeO2掺杂FeOx后,CeO2晶胞略微收缩。FeOx-CeO2纳米棒反应后,具有向纳米立方体变化的趋势;FeOx-CeO2纳米立方体
反应前后,其形貌和尺寸几乎没有变化。CeO2纳米棒掺杂FeOx后,表观活化能由106 kJ/mol下降到84 kJ/mol。结论:CeO2与
FeOx可能形成了固溶体,CeO2掺杂FeOx提高了其甲烷氯氧化反应性能。

关键词: 甲烷, 氯氧化, 一氯甲烷, FeOx-CeO2纳米催化剂

Abstract:

Objective: The paper is to study the influence of FeOx doping into CeO2 nanocrystal on the crystal structure, morphology
and the catalytic performance on oxidative chlorination of methane. Methods: Crystal structure of materials was detected by XRD, and
the morphology was observed by TEM and HRTEM. Catalytic performance on the oxidative chlorination of methane over CeO2 and
FeOx - CeO2 nanorods at different reaction temperatures was investigated, and the apparent activation energy was also calculated.
Results: The unit cell of CeO2 nanocatalysts contracted slightly after doping with FeOx. The morphology of FeOx-CeO2 nanorods had a
trend of changing into cube after reaction. However, for FeOx-CeO2 nanocubes, the morphology and size were almost unchanged. For
CeO2 nanorods, the apparent activation energy was dropped from 106 kJ/mol to 84 kJ/mol after doping with FeOx. Conclusion: CeO2
and FeOx probably formed solid solution. The catalytic performance on the oxidative chlorination of methane was improved for CeO2
nanocatslysts after doping with FeOx.

Key words: methane, oxidative chlorination, methyl chloride, FeOx-CeO2 nanocatalysts

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