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用SMAI法制备的Co/SiO_2和Co/La-SiO_2催化剂的比较 被引量:1

Comparison between Co/SiO_2 and Co/La-SiO_2 Catalyst Samples Prepared via Solvated Metal Atom Impregnation Method
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摘要 The solvated metal atom impregnation (SMAI) method was used to prepare Co/SiO 2 and Co/La SiO 2 catalyst samples with 5%Co content. The XPS results showed that the cobalt particles both in SiO 2 and in La SiO 2 existed in zero valent state (Co\+0). The CO chemisorption results showed that the cobalt particle size (5 3 nm) of Co/La SiO 2 sample was much smaller than that (8 1 nm) of Co/SiO 2 sample. The turnover frequency (TOF) of CO on Co/La SiO 2 sample was higher than that on Co/SiO 2 sample in F T reaction (CO hydrogenation), which was probably due to the fact that the cobalt particle size in Co/La SiO 2 sample was much smaller than that in Co/SiO 2 sample. The experimental results also showed that the selectivity of Co/La SiO 2 sample for long chain paraffins was higher than that of Co/SiO 2 sample. The solvated metal atom impregnation (SMAI) method was used to prepare Co/SiO 2 and Co/La SiO 2 catalyst samples with 5%Co content. The XPS results showed that the cobalt particles both in SiO 2 and in La SiO 2 existed in zero valent state (Co\+0). The CO chemisorption results showed that the cobalt particle size (5 3 nm) of Co/La SiO 2 sample was much smaller than that (8 1 nm) of Co/SiO 2 sample. The turnover frequency (TOF) of CO on Co/La SiO 2 sample was higher than that on Co/SiO 2 sample in F T reaction (CO hydrogenation), which was probably due to the fact that the cobalt particle size in Co/La SiO 2 sample was much smaller than that in Co/SiO 2 sample. The experimental results also showed that the selectivity of Co/La SiO 2 sample for long chain paraffins was higher than that of Co/SiO 2 sample.
机构地区 南开大学化学系
出处 《催化学报》 SCIE EI CAS CSCD 北大核心 2001年第5期505-507,共3页
基金 天津市自然科学基金资助项目 ( 9836 0 36 11)
关键词 费托合成 溶剂化金属原子浸渍法 镧助剂 钴基催化剂 二氧化硅 一氧化碳 化学吸附 SMAI F-T合成 Fischer Tropsch process, solvated metal atom impregnation, lanthanum promoter, cobalt\|based catalyst, silica, carbon monoxide, chemisorption
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