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首页> 外文期刊>Catalysis Today >Heterogeneous oligomerization of ethylene to liquids on bifunctional Ni-based catalysts: The influence of support properties on nickel speciation and catalytic performance
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Heterogeneous oligomerization of ethylene to liquids on bifunctional Ni-based catalysts: The influence of support properties on nickel speciation and catalytic performance

机译:在双功能镍基催化剂上乙烯非均相低聚为液体:载体性质对镍形态和催化性能的影响

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摘要

In this work we present a comparative study of the catalytic performance for the heterogeneous oligomerization of ethylene to liquids of bifunctional catalysts comprising Ni (ca. 5 wt%) impregnated on three aluminosilicate supports exhibiting distinct acidic, textural, and structural properties. Specifically, a nanocrystalline Beta zeolite, a mesostructured Al-MCM-41 sample, and a commercial silica-doped alumina (Siralox-30) were employed as supports. The materials were characterized by ICP-OES, XRD, N-2-physisorption, FTIR-pyridine, Al-27 MAS NMR spectroscopy, electron microscopy (HAADF-STEM, TEM), and low-temperature FTIR-CO. The characterization results revealed significant differences in the nickel speciation depending on the support identity. Thus, while isolated Ni2+ cations in ion exchange positions were the prevailing species on the zeolitic Ni/Beta catalyst, Ni2+ interacting with weakly acidic surface hydroxyl groups (i.e., silanols and aluminols) and under-coordinated Ni2+ on the surface of sub-5 nm NiO nanoparticles predominated on Ni/Al-MCM-41 and Ni/Siralox-30 catalysts. In the absence of appreciable deactivation the latter two catalysts displayed significantly higher catalytic activity (related to the Ni sites), thus questioning the general believe that ion exchanged Ni2+ cations are the unique active Ni species in Ni-based catalysts. On the other hand, the higher density and strength of the Bronsted acid sites in Ni/Beta determined a higher selectivity to the targeted liquid (C5+) oligomers and a higher degree of branching (i.e., higher octane-number) of the gasoline-range product in comparison to the amorphous catalysts. The C5+ productivity, however, was maximum for the most active Ni/Al-MCM-41 catalyst, reaching values as high as 12 mmol/(Kg(cat) s). (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们提供了乙烯异质低聚为双功能催化剂液体的催化性能的比较研究,该双功能催化剂包含浸渍在三个铝硅酸盐载体上的Ni(约5 wt%),表现出独特的酸性,结构和结构特性。具体而言,采用纳米晶Beta沸石,介孔结构的Al-MCM-41样品和市售的二氧化硅掺杂氧化铝(Siralox-30)作为载体。通过ICP-OES,XRD,N-2-物理吸附,FTIR-吡啶,Al-27 MAS NMR光谱,电子显微镜(HAADF-STEM,TEM)和低温FTIR-CO对材料进行了表征。表征结果表明,根据载体的不同,镍的形态差异很大。因此,尽管在离子交换位置上孤立的Ni2 +阳离子是沸石Ni / Beta催化剂上的主要物质,但Ni2 +与弱酸性表面羟基(即硅烷醇和铝醇)相互作用,并且在亚5 nm的表面上配位不足。 NiO纳米粒子在Ni / Al-MCM-41和Ni / Siralox-30催化剂上占主导地位。在没有明显失活的情况下,后两种催化剂显示出显着更高的催化活性(与Ni位有关),因此质疑普遍认为离子交换的Ni2 +阳离子是Ni基催化剂中独特的活性Ni物种。另一方面,Ni / Beta中布朗斯台德酸位点的较高密度和强度决定了其对目标液体(C5 +)低聚物的选择性更高,并且汽油范围的支化度更高(即辛烷值更高)产物与无定形催化剂相比。但是,对于最具活性的Ni / Al-MCM-41催化剂,C5 +生产率最高,达到高达12 mmol /(Kg(cat)s)的值。 (C)2015 Elsevier B.V.保留所有权利。

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