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Fe-Mo/KZSM-5上甲醇氧化为甲醛的研究
引用本文:李景林,李斌,江丽,梁宇宁,叶伟梁.Fe-Mo/KZSM-5上甲醇氧化为甲醛的研究[J].催化学报,1999,20(4):429-432.
作者姓名:李景林  李斌  江丽  梁宇宁  叶伟梁
作者单位:广西大学化学化工学院,南宁,530004
基金项目:广西壮族自治区科委自然科学基金资助项目,批准号9615007.
摘    要:采用浸渍法制备了FeMo/HZSM5和FeMo/KZSM5分子筛催化剂,利用NH3TPD和O2TPD对催化剂的表面酸性和吸附O2物种进行了表征,考察了温度、Mo/Fe摩尔比、空气/甲醇摩尔比及WHSV对催化性能的影响.实验结果表明,在FeMo/KZSM5催化剂上,适宜的反应条件下,甲醇转化率接近100%,甲醛选择性达到906%.同时还进行了96h的催化剂的稳定性实验

关 键 词:氧化铁  氧化钼  KZSM-5分子筛  甲醇  催化氧化  甲醛
修稿时间:1998年7月22日

A STUDY OF METHANOL OXIDATION TO FORMALDEHYDE ON Fe-Mo/KZSM-5 ZEOLITE
Li Jinglin,Li Bin,Jiang Li,Liang Yuning,Ye Weiliang.A STUDY OF METHANOL OXIDATION TO FORMALDEHYDE ON Fe-Mo/KZSM-5 ZEOLITE[J].Chinese Journal of Catalysis,1999,20(4):429-432.
Authors:Li Jinglin  Li Bin  Jiang Li  Liang Yuning  Ye Weiliang
Abstract:The effects of reaction temperature, Mo/Fe molar ratio, air/methanol molar ratio and WHSV on methanol oxidation over FeMo/HZSM5 and FeMo/KZSM5 catalysts were investigated. The results indicate that the FeMo/KZSM5 has higher activity than the FeMo/HZSM5. Under optimum conditions the methanol conversion and the formaldehyde selectivity reach 100% and 906% respectively. The NH3TPD and O2TPD results show that the FeMo/HZSM5 catalyst has more sites of acidity and less sites of oxygen adsorption than the FeMo/KZSM5 catalyst. The experiments show that the site of strong acidity decreases the formaldehyde selectivity and the site of oxygen adsorption at higher temperature increases the formaldehyde selectivity. This might be the reasons that the selectivity of methanol oxidation to formaldehyde increased over FeMo/KZSM5 catalyst.
Keywords:ferric oxide  molybdic oxide  KZSM5 zeolite  methanol  catalytic oxidation  formaldehyde  
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