详细信息
Effect of Pds X on Sulfur Resistance of Pd/Sio2 Catalyst for Co Oxidation ( EI收录)
文献类型:期刊文献
英文题名:Effect of Pds X on Sulfur Resistance of Pd/Sio2 Catalyst for Co Oxidation
作者:Qian, Chengyi[1]; Bian, Jiawei[1]; Ju, Feng[1,2]; Ling, Hao[1]
机构:[1] State Key Laboratory of Chemical Engineering, School of Chemical Engineering, East China University of Science and Technology, Shanghai, 200237, China; [2] Inorganic Chemistry and Catalysis, Debye Institute for Nanomaterials Science, Utrecht University, Utrecht, Netherlands
年份:2022
外文期刊名:SSRN
收录:EI(收录号:20220041886)
语种:英文
外文关键词:Carbon monoxide - Catalyst activity - Exhaust gases - Silicon compounds - Sulfur
摘要:Carbon monoxide (CO) is one of the most widely spread and enormous pollutants in the atmosphere, and CO catalytic oxidation is the primary method for reducing CO levels. Pd catalysts show excellent catalytic performance in CO catalytic oxidation, yet the majority of Pd-based catalysts are weakly resistant to sulfur. SO2, which is particularly harmful to the catalyst, is frequently present in industrial exhaust gases. Therefore, in this report, we have used a H2S pretreated Pd-based catalyst for CO catalytic oxidation with outstanding catalytic activity, sulfur resistance and high stability. A series of characterizations were carried out on the fresh and used catalysts, revealing that the catalytic activity is determined by Pd0 and the sulfur resistance is dependent on PdSx species. The PdSx content is adjusted by changing the concentration of H2S in the gas sulfidation process. The catalytic activity of Pd/SiO 2 after sulfidation is much superior to that of other Pd-based catalysts, enabling complete oxidation of CO at around 200°C. For the long-term test, the Pd/SiO2 catalyst performed a good ability, and the conversion of CO still maintained at 94.93% in the presence of 500 ppm SO2 for 300 hours, indicating the excellent stability. At last, CO catalytic oxidation and sulfur resistance mechanisms are presented and discussed, which will provide an insight in the design of sulfur resistant catalysts. ? 2022, The Authors. All rights reserved.
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