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Hydrodesulfurization of dibenzothiophene and its hydrogenated intermediates over bulk MoP

机译:本体MoP上二苯并噻吩及其加氢中间体的加氢脱硫

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The hydrodesulfurization (HDS) of dibenzothiophene (DBT) and its hydrogenated intermediates 1,2,3,4-tetrahydro-dibenzothiophene (TH-DBT) and 1,2,3,4,4a,9b-hexahydro-dibenzothiophene (HH-DBT) over a bulk MoP catalyst was studied at 340 °C and 4 MPa both in the presence and absence of piperidine. The results indicated that sulfur was incorporated on the surface of MoP during HDS reactions, probably leading to the formation of new active sites, which possessed higher direct desulfurization (DDS) activity than the fresh MoP. The hydrogenation pathway and DDS pathway played an equally important role in the HDS of DBT. The desulfurization of TH-DBT was much faster than that of DBT, whereas HH-DBT mainly desulfurized by dehydrogenation to TH-DBT and subsequent desulfurization of TH-DBT. Piperidine decreased the rates of all reactions, but that of hydrogenation more than of desulfurization. It not only competed with the sulfur-containing molecules for adsorption on the active sites but also slowed down the sulfidation of MoP surface.
机译:二苯并噻吩(DBT)及其加氢中间体1,2,3,4-四氢-二苯并噻吩(TH-DBT)和1,2,3,4,4a,9b-六氢-二苯并噻吩(HH-DBT)的加氢脱硫(HDS) )在存在和不存在哌啶的情况下,在340°C和4 MPa下研究了本体MoP催化剂。结果表明,在HDS反应过程中,硫被掺入MoP的表面,可能导致形成新的活性位,该活性位比新鲜的MoP具有更高的直接脱硫(DDS)活性。氢化途径和DDS途径在DBT的HDS中起着同等重要的作用。 TH-DBT的脱硫比DBT的脱硫快得多,而HH-DBT主要通过脱氢成TH-DBT和随后的TH-DBT脱硫来脱硫。哌啶降低了所有反应的速率,但是氢化速率比脱硫速率更多。它不仅与含硫分子竞争吸附在活性位点上,而且减慢了MoP表面的硫化。

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