Transformation of n-hexane on Al2O3and SiO2supported Pt, Pt+Ga and Ir+Pt+Ga catalysts prepared by anchoring methods

被引:0
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作者
Sándor Gőbölös
József L. Margitfalvi
József L. Margitfalvi
Mihály Hegedűs
Yurii A. Ryndin
Yurii A. Ryndin
机构
[1] Chemical Research Center,
[2] Institute of Surface Chemistry and Catalysis,undefined
[3] Hungarian Academy of Sciences,undefined
[4] Chemical Research Center,undefined
[5] Institute of Surface Chemistry and Catalysis,undefined
[6] Hungarian Academy of Sciences,undefined
[7] Chemical Research Center,undefined
[8] Institute of Surface Chemistry and Catalysis,undefined
[9] Hungarian Academy of Sciences,undefined
[10] Chemical Research Center,undefined
[11] Institute of Surface Chemistry and Catalysis,undefined
[12] Hungarian Academy of Sciences,undefined
[13] Boreskov Institute of Catalysis,undefined
[14] Russian Academy of Sciences,undefined
[15] Boreskov Institute of Catalysis,undefined
[16] Russian Academy of Sciences,undefined
关键词
hydrogenolysis; catalyst; aromatization; n-Hexane; Pt+Ga/SiO2; Pt+Ga/Al2O3; Ir+Pt+Ga/SiO2; Ir+Pt+Ga/Al2O3;
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摘要
Transformation of n-hexane over Al2O3and SiO2supported Pt, Pt+Ga and Ir+Pt+Ga catalysts was studied in a continuous-flow reactor operated under slug-pulse mode at 520°C. Bimetallic catalysts were prepared by introducing first Ga(OEt)3and then diallylplatinum as precursor compounds. Iridium was then introduced viadecomposition of Ir4(CO)12adsorbed onto Pt+Ga catalysts. The addition of Ga to Pt/SiO2catalyst decreased hydrogenation, aromatization and hydrogenolysis selectivity. Over Pt/Al2O3catalyst Ga increased hydrogenolysis selectivity and decreased isomerization and C5-cyclization. The main effect of Ir was to increase hydrogenolysis selectivity and the stability of catalysts.</o:p>
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页码:313 / 324
页数:11
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