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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Effect of the coexistence of nitrogen compounds on the sulfur tolerance and catalytic activity of Pd and Pt monometallic catalysts supported on high-silica USY zeolite and amorphous silica
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Effect of the coexistence of nitrogen compounds on the sulfur tolerance and catalytic activity of Pd and Pt monometallic catalysts supported on high-silica USY zeolite and amorphous silica

机译:氮化合物共存对高硅USY沸石和无定形二氧化硅负载的Pd和Pt单金属催化剂的耐硫性和催化活性的影响

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The effects of coexistence of nitrogen compounds on the catalytic activity of the Pd and Pt monometallic catalysts supported on amorphous silica and high-silica USY zeolite (SiO_2/Al_2O_3 = 390) were investigated using a high-pressure fixed-bed continuous flow reactor operating at 3.9 MPa and 553 K.Types of catalytic activity studied included the tetralin hydrogenation activity and the 4,6-dimethyldibenzothiophene (4,6-DMDBT) hydrodesulfurization activity.The Pd/USY zeolite catalyst showed the highest tetralin hydrogenation activity with feedstock containing only 4,6-DMDBT (S = 300 ppm) without nitrogen compounds.However,its hydrogenation activity was strongly inhibited by the addition of n-butylamine (N = 20 ppm).Significant inhibitory effects by nitrogen compounds were also observed for the Pd/SiO_2 catalyst.The Pt/USY zeolite catalyst showed lower hydrogenation activity than the Pd/USY zeolite,while the Pt/SiO_2 catalyst showed higher activity than the Pd/SiO_2 catalysts.The inhibitory effects of nitrogen compounds on these Pt catalysts were less pronounced than on Pd catalysts.On the other hand,with respect to hydrodesulfurization,Pt catalysts showed higher activity in 4,6-DMDBT hydrodesulfurization than Pd catalysts,irrespective of the support species,due to the latter's higher hydrogenolytic ability to cleave the C-S bond even in the presence of nitrogen compounds.On the other hand,Pd catalysts were subject to a decrease in 4,6-DMDBT hydrodesulfurization resulting from a loss in hydrogenation activity in the presence of nitrogen compounds.We conclude that Pt catalysts are superior to Pd catalysts with respect to both hydrogenation and hydrodesulfurization for the hydrotreatment of industrial feedstocks containing sulfur and nitrogen compounds.
机译:使用高压固定床连续流反应器,研究了氮化合物共存对负载在非晶态二氧化硅和高硅USY沸石(SiO_2 / Al_2O_3 = 390)上的Pd和Pt单金属催化剂的催化活性的影响。 3.9 MPa和553 K.所研究的催化活性类型包括四氢萘氢化活性和4,6-二甲基二苯并噻吩(4,6-DMDBT)加氢脱硫活性.Pd / USY沸石催化剂具有最高的四氢萘氢化活性,原料仅含4种,6-DMDBT(S = 300 ppm),不含氮化合物。但是,加正丁胺(N = 20 ppm)强烈抑制了其氢化活性。还观察到了氮化合物对Pd / SiO_2的显着抑制作用。 Pt / USY沸石催化剂的加氢活性低于Pd / USY沸石,而Pt / SiO_2催化剂的催化活性高于Pd / SiO_2催化剂。氮化合物对这些Pt催化剂的影响不如对Pd催化剂明显。另一方面,就加氢脱硫而言,无论载体种类如何,Pt催化剂在4,6-DMDBT加氢脱硫中的活性均高于Pd催化剂。另一方面,由于氮存在下加氢活性的降低,Pd催化剂的4,6-DMDBT加氢脱硫能力降低,从而使Pd催化剂的CS键断裂具有更高的氢解能力。我们得出结论,在加氢和加氢脱硫方面,Pt催化剂在加氢处理含硫和氮化合物的工业原料方面优于Pd催化剂。

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