Enhanced performances in catalytic oxidation of o-xylene over hierarchical macro-/mesoporous silica-supported palladium catalysts
Qiao, Nanli; Zhang, Xin; He, Chi; Li, Yang; Zhang, Zhongshen; Cheng, Jie; Hao, Zhengping
刊名FRONTIERS OF ENVIRONMENTAL SCIENCE & ENGINEERING
2016-06
卷号10期号:3页码:458-466
关键词hierarchical macro-/mesoporous silica palladium VOCs catalytic oxidation
英文摘要A series of hierarchical macro-/mesoporous silica supports (MMSs) were successfully synthesized using dual-templating technique employing polystyrene (PS) spheres and the Pluronic P123 surfactant. Pd was next loaded on the hierarchical silica supports via colloids precipitation method. Physicochemical properties of the synthesized samples were characterized by various techniques and all catalysts were tested for the total oxidation of o-xylene. Among them, the Pd/MMS-b catalyst with tetraethoxysilane/polystyrene weight ratio of 1.0 exhibited superior catalytic activity, and under a higher gas hourly space velocity (GHSV) of 70000 h(-1), the 90% conversion of o-xylene has been obtained at around 200 degrees C. The BET and SEM results indicated that Pd/MMSb catalyst possesses high surface area and large pore volume, and well-ordered, interconnected macropores and 2D hexagonally mesopores hybrid network. This novel ordered hierarchical porous structure was highly beneficial to the dispersion of active sites Pd nanoparticles with less aggregation, and facilitates diffusion of reactants and products. Furthermore, the Pd/MMS-b catalyst possessed good stability and durability.
内容类型期刊论文
源URL[http://ir.rcees.ac.cn/handle/311016/35579]  
专题生态环境研究中心_城市与区域生态国家重点实验室
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GB/T 7714
Qiao, Nanli,Zhang, Xin,He, Chi,et al. Enhanced performances in catalytic oxidation of o-xylene over hierarchical macro-/mesoporous silica-supported palladium catalysts[J]. FRONTIERS OF ENVIRONMENTAL SCIENCE & ENGINEERING,2016,10(3):458-466.
APA Qiao, Nanli.,Zhang, Xin.,He, Chi.,Li, Yang.,Zhang, Zhongshen.,...&Hao, Zhengping.(2016).Enhanced performances in catalytic oxidation of o-xylene over hierarchical macro-/mesoporous silica-supported palladium catalysts.FRONTIERS OF ENVIRONMENTAL SCIENCE & ENGINEERING,10(3),458-466.
MLA Qiao, Nanli,et al."Enhanced performances in catalytic oxidation of o-xylene over hierarchical macro-/mesoporous silica-supported palladium catalysts".FRONTIERS OF ENVIRONMENTAL SCIENCE & ENGINEERING 10.3(2016):458-466.
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