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Promotion Effects of Platinum and Ruthenium on Carbon Nanotube Supported Cobalt Catalysts for Fischer-Tropsch Synthesis

机译:铂和钌对费托合成碳纳米管负载的钴催化剂的促进作用

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Carbon nanotube supported nano-size monometallic and noble metal (Pt and Ru) promoted cobalt catalysts were prepared by incipient wetness impregnation (IWI) using solution of cobalt nitrate and characterized by nitrogen adsorption isotherm, X-ray diffraction (XRD), temperature programmed reduction, in situ magnetic method and TEM. Analysis of the magnetization and H2-TPR data suggested promotion with platinum and ruthenium significantly decreased the cobalt species reduction temperature. TEM and XRD results showed that the presence of noble metal promoters had no significant effect on the size of cobalt for carbon naotube as catalytic support. Promotion of cobalt carbon nanotube-supported catalysts with small amounts of Pt and Ru resulted in slight increase in Fischer-Tropsch cobalt time yield. The Pt and Ru promoted cobalt catalyst exhibited carbon monoxide conversion of 37.1 and 31.4, respectively. C5+ hydrocarbon selectivity was attained at 80.0%. The Pt promoted cobalt supported on carbon nanotube yielded better catalytic stability than that of the monometallic cobalt catalyst.
机译:碳纳米管负载的纳米级单金属和贵金属(Pt和Ru)助催化的钴催化剂的制备方法是使用硝酸钴溶液通过初期湿润浸渍(IWI)进行,并以氮吸附等温线,X射线衍射(XRD),程序升温还原为特征。 ,原位磁法和TEM。对磁化强度和H2-TPR数据的分析表明,铂和钌的促进显着降低了钴物种的还原温度。 TEM和XRD结果表明,贵金属助催化剂的存在对碳纳米管作为催化载体的钴尺寸没有明显影响。用少量Pt和Ru促进钴碳纳米管负载的催化剂导致费-托钴时间收率略有增加。 Pt和Ru促进的钴催化剂的一氧化碳转化率分别为37.1和31.4。 C5 +烃的选择性达到80.0%。负载在碳纳米管上的Pt促进的钴比单金属钴催化剂具有更好的催化稳定性。

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