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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Simultaneous hydrodesulfurization and hydrodenitrogenation on MoP/Si02 catalysts: Effect of catalyst preparation method
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Simultaneous hydrodesulfurization and hydrodenitrogenation on MoP/Si02 catalysts: Effect of catalyst preparation method

机译:MoP / SiO2催化剂同时加氢脱硫和加氢脱氮:催化剂制备方法的影响

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摘要

Silica-supported MoP catalysts were prepared by temperature-programmed reduction (H2-TPR) at 550, 600 and 700 °C of the corresponding dried or calcined substrates. Two catalysts were prepared by using two different synthetic approaches. A MoP catalyst was prepared using the method described in the literature that uses ammonium phosphate (NH4H2PO4) and ammonium heptamolyb-date ((NH4)6Mo7O_(24)·4H2O) precursors, calcination and subsequent H2-TPR at high temperature. A new synthetic approach was carried out to prepare another MoP catalyst using ammonium molybdate ((NH4)2MoO4) and phosphorous acid (H2PO3H) as precursors and subsequent H2-TPR. The catalytic activity was evaluated in the individual and simultaneous hydrodesulfurization (HDS) and hydrodenitrogenation (HDN) reactions performed in a flow reactor under a hydrogen pressure of 3.0 MPa. The fresh reduced and spent catalysts were characterized by ICP, N2 adsorption-desorption isotherms at -196°C, XRD, HRTEM, NH3-TPD, XPS and elemental chemical CNHS analysis. The silica-supported MoP catalysts prepared by the new synthetic method were more active in the HDS of DBT than the catalyst prepared by reduction of calcined substrate. The catalyst characterization results showed that the lower reduction temperature required to form the MoP species is responsible for the enhancement in catalytic performance. The key factors influencing on the catalytic activity are: a large specific surface area, high acidity and good dispersion of MoP phase on the support substrate. Activity measurements in simultaneous HDN-HDS showed that quinoline conversion is enhanced in the presence of a small amount of DBT whereas the HDS of DBT reaction does not appear to be inhibited by a small amount of quinoline added to the feed.
机译:二氧化硅负载的MoP催化剂是通过在550、600和700°C下对相应的干燥或煅烧底物进行程序升温还原(H2-TPR)制备的。通过使用两种不同的合成方法制备了两种催化剂。使用文献中描述的方法制备MoP催化剂,该方法使用磷酸铵(NH4H2PO4)和庚二酸铵((NH4)6Mo7O_(24)·4H2O)前体,煅烧以及随后的高温H2-TPR。进行了一种新的合成方法,以钼酸铵((NH4)2MoO4)和亚磷酸(H2PO3H)为前体,然后使用H2-TPR制备了另一种MoP催化剂。在流动反应器中,在氢气压力为3.0 MPa的条件下,分别进行同时加氢脱硫(HDS)和加氢脱氮(HDN)反应,评估催化活性。通过ICP,-196°C下的N2吸附-解吸等温线,XRD,HRTEM,NH3-TPD,XPS和元素化学CNHS分析表征了新鲜的还原和废催化剂。通过新的合成方法制备的二氧化硅负载的MoP催化剂在DBT的HDS中比通过还原煅烧的底物制备的催化剂更具活性。催化剂表征结果表明,形成MoP物种所需的较低还原温度是催化性能增强的原因。影响催化活性的关键因素是:较大的比表面积,较高的酸度和MoP相在载体基质上的良好分散性。在同时进行的HDN-HDS中的活性测量结果表明,在少量DBT的存在下,喹啉转化率会提高,而向饲料中添加少量喹啉似乎不会抑制DBT反应的HDS。

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