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Catalytic removal of phenol from gas streams by perovskite-type catalysts 被引量:5

Catalytic removal of phenol from gas streams by perovskite-type catalysts
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摘要 Three perovskite-type catalysts prepared by citric acid method are applied to remove phenol from gas streams with the total flow rate of 300 mL/min, corresponding to a GHSV of 10,000/hr. LaMnO3 catalyst is first prepared and further partially substituted with Sr and Cu to prepare Lao.sSro.2MnO3 and Lao.sSro.2Mno.sCuo.203, and catalytic activities and fundamen- tal characteristics of these three catalysts are compared. The results show that phenol removal efficiency achieved with Lao.sSro.2Mno.sCuo.203 reaches 100% with the operating temperature of 200℃ and the rate of mineralization at 300℃ is up to 100%, while the phenol removal efficiencies achieved with Lao.sSro.2MnO3 and LaMnO3 are up to 100% with the operating temperature of 300℃ and 400℃, respectively. X-ray photoelectron spectroscopy (XPS) analysis shows that the addition of Sr and Cu increases the lattice oxygen of Lao.sSro.2Mno.sCuo.203, and further increases mobility or availability of lattice oxygen. The results indicate that Lao.sSro.2Mno.sCuo.203 has the best activity for phenol removal among three catalysts prepared and the catalytic activity of phenol oxidation is enhanced by the introduction of Sr and Cu into LaMnO3. Apparent activation energy of 48 kJ/mol is calculated by Mars-Van Krevelen Model for phenol oxidation with Lao.sSro.2Mno.sCuo.203 as catalyst. Three perovskite-type catalysts prepared by citric acid method are applied to remove phenol from gas streams with the total flow rate of 300 mL/min, corresponding to a GHSV of 10,000/hr. LaMnO3 catalyst is first prepared and further partially substituted with Sr and Cu to prepare Lao.sSro.2MnO3 and Lao.sSro.2Mno.sCuo.203, and catalytic activities and fundamen- tal characteristics of these three catalysts are compared. The results show that phenol removal efficiency achieved with Lao.sSro.2Mno.sCuo.203 reaches 100% with the operating temperature of 200℃ and the rate of mineralization at 300℃ is up to 100%, while the phenol removal efficiencies achieved with Lao.sSro.2MnO3 and LaMnO3 are up to 100% with the operating temperature of 300℃ and 400℃, respectively. X-ray photoelectron spectroscopy (XPS) analysis shows that the addition of Sr and Cu increases the lattice oxygen of Lao.sSro.2Mno.sCuo.203, and further increases mobility or availability of lattice oxygen. The results indicate that Lao.sSro.2Mno.sCuo.203 has the best activity for phenol removal among three catalysts prepared and the catalytic activity of phenol oxidation is enhanced by the introduction of Sr and Cu into LaMnO3. Apparent activation energy of 48 kJ/mol is calculated by Mars-Van Krevelen Model for phenol oxidation with Lao.sSro.2Mno.sCuo.203 as catalyst.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2017年第6期131-139,共9页 环境科学学报(英文版)
基金 Ministry of Science and Technology(MOST),R.O.C.(Grant No-MOST102-2221-E-008-003-MY3) National Central University(10221046)
关键词 Volatile organic compounds (VOCs)PhenolPerovskite-type catalystCatalysisActivation energyMineralization rate Volatile organic compounds (VOCs)PhenolPerovskite-type catalystCatalysisActivation energyMineralization rate
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