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Strong effect of transitional metals on the sulfur resistance of Pd/HY-Al2O3 catalysts for aromatic hydrogenation

机译:过渡金属对pd / HY-al2O3催化剂芳烃加氢耐硫性的强烈影响

摘要

In order to improve the sulfur resistance of noble metal catalysts in the aromatic hydrogenation of diesel fuel, the alloying effect of non-noble metals with Pd was studied. Toluene hydrogenation over Pd and Pd-M bimetallic catalysts (M = Cr, W,La, Mn, Mo, Ag) on a mixed HY-Al2O3 support was investigated in the presence of 3000 ppm sulfur as thiophene in the feedstock. The results showed that the addition of the second metals strongly affected the activity of toluene hydrogenation, which suggests that the sulfur resistibility of Pd-M bimetallic catalysts is much different from single Pd. La, Mn, Mo and Ag decreased the sulfur resistance of the palladium catalysts. For example, the toluene conversion at 553 K was observed to decrease sharply from 39.4 wt.% on Pd to 1.6 wt.% on Pd-Ag, which is by a factor of 25. One of the important findings in this article is that Cr and W increase hydrogenation activity of Pd catalysts. The reactions occurring on these catalysts include hydrogenation, isomerization and hydrocracking, The addition of the second metals has no noticeable effects on the hydrogenation and isomerization selectivity, but it slightly suppresses hydrocracking reactions. The four typical catalysts, Pd-Cr, Pd-W, Pd-Ag and Pd were characterized by infrared (IR) spectroscopy of pyridine and CO. LR spectra of CO revealed the strong interaction between Pd and the second metal as Cr, W and Ag (or their oxide), indicating that the improvement in sulfur resistance originates from electron-deficient Pd with the addition of second metals. (C) 2001 Elsevier Science B.V. All rights reserved.
机译:为了提高贵金属催化剂在柴油芳烃加氢中的抗硫性能,研究了非贵金属与钯的合金化作用。研究了在混合HY-Al2O3载体上Pd和Pd-M双金属催化剂(M = Cr,W,La,Mn,Mo,Ag)上甲苯的氢化,原料中有3000 ppm的硫噻吩存在。结果表明,添加第二种金属强烈影响了甲苯加氢活性,这表明Pd-M双金属催化剂的抗硫性与单一Pd有很大不同。 La,Mn,Mo和Ag降低了钯催化剂的抗硫性。例如,观察到在553 K时甲苯的转化率从Pd的39.4 wt。%急剧下降到Pd-Ag的1.6 wt。%,降低了25倍。本文的重要发现之一是Cr和W提高Pd催化剂的氢化活性。这些催化剂上发生的反应包括加氢,异构化和加氢裂化。添加第二种金属对加氢和异构化选择性没有明显影响,但略微抑制了加氢裂化反应。通过吡啶和CO的红外光谱对四种典型的催化剂Pd-Cr,Pd-W,Pd-Ag和Pd进行了表征。CO的LR光谱表明,Pd与第二种金属Cr,W和W之间有很强的相互作用。 Ag(或它们的氧化物),表明抗硫性的提高是由于添加了第二种金属导致缺电子的Pd引起的。 (C)2001 Elsevier Science B.V.保留所有权利。

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