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Total oxidation of propane over Co3O4-based catalysts: Elucidating the influence of Zr dopant  ( SCI-EXPANDED收录 EI收录)  

文献类型:期刊文献

英文题名:Total oxidation of propane over Co3O4-based catalysts: Elucidating the influence of Zr dopant

作者:Chai, Guangtao[1,2];Zhang, Weidong[2];Liotta, Leonarda Francesca[3];Li, Mingqi[1];Guo, Yanglong[1];Giroir-Fendler, Anne[2]

机构:[1]East China Univ Sci & Technol, Key Lab Adv Mat, Res Inst Ind Catalysis, Sch Chem & Mol Engn, Shanghai 200237, Peoples R China;[2]Univ Claude Bernard Lyon 1, Univ Lyon, CNRS, IRCELYON, 2 Ave Albert Einstein, F-69622 Villeurbanne, France;[3]CNR, Ist Studio Mat Nanostrutturati, Via Ugo Malfa 153, I-90146 Palermo, Italy

年份:2021

卷号:298

外文期刊名:APPLIED CATALYSIS B-ENVIRONMENT AND ENERGY

收录:;EI(收录号:20213310772077);WOS:【SCI-EXPANDED(收录号:WOS:000696932600004)】;

基金:This work was financially supported by the National Key Research and Development Program of China (2016YFC0204300) , the National Natural Science Foundation of China (21577035) , the commission of Science and Technology of Shanghai Municipality (15DZ1205305) and the Auvergne Rhone Alpes region (PAI project number 1900797501-10687) . The contributions of the China Scholarship Council, the Institut de recherches sur la catalyse et l'environnement de Lyon (IRCELYON) , CNRS, Universite Claude Bernard Lyon 1 (UCBL1) and Istituto per lo Studio di Materiali Nanostrutturati-CNR are also acknowledged.

语种:英文

外文关键词:Total oxidation; Propane; Co3O4; Low zirconium doping; Oxygen mobility

摘要:A series of Zr-doped Co(3)O(4 )catalysts (x% Zr-Co3O4), prepared by citrate sol-gel method with a low doping amount of zirconium, was applied in the catalytic oxidation of 1000 ppm propane at a weight hourly space velocity of 40,000 mL g(-1) h(-1). Different techniques were used to characterize the catalysts. The results showed that the physicochemical properties and catalytic performances of the x% Zr-Co(3)O(4 )catalysts were significantly influenced by the addition of zirconium. Only a small part of Zr could be doped into the Co(3)O(4 )lattice and the spare Zr would prefer to aggregate on the surface to form zirconium oxide. In the x% Zr-Co(3)O(4 )catalysts, Zr disordered Co3O4 spinet is formed by entering into the Co(3)O(4 )lattice and forming Co-O-Zr species, resulting in smaller Co(3)O(4 )crystallite size, larger specific surface area, better low-temperature reducibility, higher surface Co2+ concentration, and higher content of surface oxygen vacancies and active oxygen species. The best performance was achieved on 1% Zr-Co3O4 for propane oxidation, with 90% propane conversion at 241 degrees C. The most active catalyst showed excellent performance in toluene and propene oxidation as well. Propane reaction tests, carried out without oxygen in the gas stream, indicated the promoting effect of the low amount of Zr on the oxygen mobility of x% Zr-Co(3)O(4 )catalysts. Durability tests of propane oxidation showed that stable conversion could be achieved over 1% Zr-Co3O4, thus being a potential active catalyst for practical application.

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