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Palladium Nanoparticle Size Effect in Hydrodesulfurization of 4,6-Dimethyldibenzothiophene (4,6-DMDBT)

机译:钯纳米粒子尺寸在4,6-二甲基二苯甲酸噻吩加氢脱硫中的作用(4,6-DMDBT)

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摘要

Pd nanoparticle size sensitivity of 4,6-dimethyldibenzothiophene (4,6-DMDBT) hydrodesulfurization was investigated by using 4, 8, 13, and 87nm particles and was compared with the sulfur-free and sulfur-inhibited hydrogenation of 3,3-dimethylbiphenyl, which is a product of direct desulfurization of 4,6-DMDBT. The smallest 4nm particles provided unprecedented (for Pd at 5MPa and 300 degrees C) direct desulfurization selectivity of 20% at 40% conversion because of the reduced contribution of the hydrogenation path. The 4nm particles were poisoned by the adsorbed sulfur to the greatest extent. The optimal size, providing the highest Pd mass-based yield of the desulfurized products, was found to be 8nm. The catalyst with 87nm particles was based on Pd nanocubes with the lowest edge/terrace surface atom ratio and large terraces and this showed the lowest sulfur extraction from both 4,6-DMDBT and sulfurous intermediates as a result of the low availability of edge atoms for a perpendicular sigma-mode adsorption through the lone pair of the sulfur atom.
机译:通过使用4,8,13和87nm颗粒研究了4,6-二甲基二苯甲酸噻吩(4,6-DMDBT)加氢脱硫的PD纳米粒子尺寸浓度,并与3,3-二甲基苯基的无硫和硫抑制氢化进行了比较,这是直接脱硫4,6-DMDBT的产物。由于氢化路径的贡献降低,所以前所未有的4nM颗粒(对于5MPa,300摄氏度,300摄氏度),直接脱硫选择性为40%的转化率。将4nm颗粒在最大程度上被吸附的硫中毒。发现最佳尺寸,提供脱硫产品的最高Pd基于脱硫产物的产量为8nm。具有87nm颗粒的催化剂基于具有最低边缘/露天表面原子比和大露台的Pd纳米孔,并且这显示出由于边缘原子的低可用性而从4,6-DMDBT和熔融中间体中萃取最低的硫萃取通过孤立的硫原子的垂直σ模式吸附。

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