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Hydrodesulfurization of Dibenzothiophene and its Hydrogenated Intermediates Over Bulk Ni2P

机译:Ni2P上二苯并噻吩及其加氢中间体的加氢脱硫

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摘要

A bulk Ni2P catalyst was prepared by co-precipitation of nickel phosphate followed by in situ temperature-programmed reduction (TPR) with H2. 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-hexahydrodibenzothiophene (HH-DBT) was studied at 340 °C and 4 MPa both in the presence and absence of piperidine (Pi). Bulk Ni2P exhibited a relatively low hydrogenation/dehydrogenation activity but high desulfurization activity. Pi retarded the hydrogenation of DBT to a greater extent than the desulfurization. The desulfurization of HH-DBT to 2-cyclohexen-1-yl-benzene (CHEB-2) occurred mainly by β-elimination of the hydrogen atom attached to carbon atom C(4), whereas TH-DBT desulfurized mainly by hydrogenolysis to 1-cyclohexen-1-yl-benzene (CHEB-1). A minor amount of biphenyl (BP) observed in the HDS of TH-DBT and HH-DBT is due to the disproportionation of cyclohexenyl-benzenes. A reaction network of the HDS of DBT over Ni2P is postulated in which both β-elimination and hydrogenolysis play a role in the breaking of the C-S bonds.
机译:通过共沉淀磷酸镍,然后与氢气进行原位程序升温还原(TPR),制备块状Ni2P催化剂。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)为在存在和不存在哌啶(Pi)的情况下,在340°C和4 MPa下进行了研究。大量的Ni 2 P表现出相对较低的加氢/脱氢活性但具有高的脱硫活性。 Pi比脱硫更大程度地阻碍了DBT的氢化。 HH-DBT脱硫为2-环己烯-1-基苯(CHEB-2)主要是通过β-消除连接到碳原子C(4)上的氢原子而实现的,而TH-DBT则主要通过氢解为1来脱硫-环己烯-1-基苯(CHEB-1)。在TH-DBT和HH-DBT的HDS中观察到少量的联苯(BP)是由于环己烯基-苯的歧化。假设DBT的HDS在Ni 2 P上的反应网络中,β-消除和氢解均在C-S键的断裂中起作用。

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