首页> 外文期刊>Journal of Catalysis >MODIFICATION OF THE PROPERTIES AND SULFUR RESISTANCE OF A PD/SIO2 CATALYST BY LA ADDITION
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MODIFICATION OF THE PROPERTIES AND SULFUR RESISTANCE OF A PD/SIO2 CATALYST BY LA ADDITION

机译:通过LA加添加Pd / SiO2催化剂的性能和硫抗性的改变

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The effect of LaCl3 on the properties and deactivation of Pd/SiO2 catalysts by thiophene poisoning in the hydrogenation of ethylbenzene has been studied. Gas chemisorption and TPR measurements, respectively, show that Pd dispersion increases with the ratio La/Pd and that La hinders palladium reduction. The presence of Pd-n+ species on Pd/SiO2 was evidenced by XPS, but the incorporation of lanthanum decreases the concentration of Pd-n+. Deactivation results show that La improves the Pd sulfur resistance, which goes through a maximum for the catalyst with La/Pd = 2 atomic ratio. This effect cannot be attributed to the increase in Pd dispersion produced by La, a decorating effect of Pd by La species, or sulfur adsorption by La. From the mechanism for metal poisoning by thiophene at 493 K, which involves the hydrogenolysis of the sulfur compound on the metal sites, an alternative explanation of the results is suggested. It seems that LaCl3 essentially plays a diluent role, disrupting the ensembles of palladium atoms required for the breaking of the C-S bond. XPS and TPR results, which indicate the occurrence of a weak Pd-La interaction, support this hypothesis. Thus, the catalysts containing lanthanum are more sulfur resistant, with a maximum for La/Pd = 2. For this sample, XPS suggests that a slight charge transfer from Pd to La takes place and therefore the electronic effect of Pd-n+ is added to the geometric effect produced by La3+. (C) 1995 Academic Press, Inc. [References: 60]
机译:研究了LACL3对乙基苯氢化中噻吩中毒的Pd / SiO2催化剂的性质和失活的影响。气体化学吸取和TPR测量分别表明PD分散率随比LA / Pd和LA阻碍钯的降低而增加。通过XPS证明了PD-N +物种对PD-N +物种的存在,但镧的掺入降低了PD-N +的浓度。失活结果表明,LA改善了Pd硫抗性,其通过La / Pd = 2原子比催化剂的最大值。这种效果不能归因于La产生的PD分散体,La物种的PD的装饰效果,或者通过La的硫吸附。来自噻吩的金属中毒机制在493k中,涉及硫化合物的氢解。在金属场地,提出了对结果的替代解释。似乎Lacl3似乎基本上发挥了稀释作用,破坏了断裂C-S键所需的钯原子的合奏。 XPS和TPR结果,表明PD-LA相互作用弱,支持这一假设。因此,含有镧的催化剂是更耐硫的耐硫,最大La / Pd = 2。对于该样品,XPS表明从PD到La的略微电荷转移,因此加入PD-N +的电子效果La3 +产生的几何效果。 (c)1995年学术出版社,Inc。[参考文献:60]

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