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首页> 外文期刊>ACS catalysis >Cobalt-Nickel Nanoparticles Supported on Reducible Oxides as Fischer-Tropsch Catalysts
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Cobalt-Nickel Nanoparticles Supported on Reducible Oxides as Fischer-Tropsch Catalysts

机译:钴 - 镍纳米粒子负载在降低氧化物中,作为Fischer-Tropsch催化剂

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Efficient and more sustainable production of transportation fuels is key to fulfill the ever-increasing global demand. In order to achieve this, progress in the development of highly active and selective catalysts is fundamental. The combination of bimetallic nanoparticles and reactive support materials offers unique and complex interactions that can be exploited for improved catalyst performance. Here, we report on cobalt-nickel nanoparticles on reducible metal oxides as support material for enhanced performance in the Fischer-Tropsch synthesis. For this, different cobalt to nickel ratios (Ni/(Ni + Co): 0.0, 0.25, 0.50, 0.75, or 1.0 atom/atom) supported on reducible (TiO2 and Nb2O5) or nonreducible (alpha-Al2O3) oxides were studied. At 1 bar, Co-Ni nanoparticles supported on TiO2 and Nb2O5 showed stable catalytic performance, high activities and remarkably high selectivities for long-chain hydrocarbons (C5+, similar to 80 wt %). In contrast, catalysts supported on alpha-Al2O3 independently of the metal composition showed lower activities, high methane production, and considerable deactivation throughout the experiment. At 20 bar, the combination of cobalt and nickel supported on reducible oxides allowed for 25-50% cobalt substitution by nickel with increased Fischer-Tropsch activity and without sacrificing much C5+ selectivity. STEM-EDX and IR of adsorbed CO pointed to a cobalt enrichment of the nanoparticle's surface and a weaker adsorption of CO in Co-Ni supported on TiO2 and Nb2O5 and not on alpha-Al2O3 , modifying the rate-determining step and the catalytic performance. Overall, we show the strong effect and potential of reducible metal oxides as support materials for bimetallic nanoparticles for enhanced catalytic performance.
机译:高效且可持续的运输燃料生产是满足越来越多的全球需求的关键。为了实现这一目标,高活性和选择性催化剂的发展进展是至关重要的。双金属纳米颗粒和反应性载体材料的组合提供独特且复杂的相互作用,可利用改善催化剂性能。在此,我们将钴 - 镍纳米颗粒报告在可还原金属氧化物中作为载体材料,以增强Fischer-Tropsch合成的性能。为此,研究了将不同的钴(Ni /(Ni + Co):0.0,0.25,0.50,0.75或1.0原子/原子)研究了在可还原(TiO 2和Nb2O5)或不可脆(α-Al2O3)氧化物上的基础上。在1巴中,在TiO 2和Nb2O5上负载的Co-Ni纳米颗粒显示出稳定的催化性能,高活性,并且长链碳氢化合物的相当高的选择性(C5 +,类似于80wt%)。相反,在α-Al2O3上独立于金属组合物支持的催化剂显示出较低的活性,高甲烷的生产和整个实验中的相当大的失活。在20巴特,钴和镍的组合在可再氧化物上允许通过镍替代25-50%的钴替代,具有增加的Fischer-Tropsch活性,并且不会牺牲大量C5 +选择性。 DEP-EDX和IR的吸附CO指向纳米颗粒表面的钴富集,并且在TiO 2和Nb2O5上负载的CO-Ni中的CO较弱,而不是在α-Al 2 O 3上,改变速率确定步骤和催化性能。总体而言,我们展示了可降低金属氧化物作为用于增强催化性能的双金属纳米颗粒的载体材料的强烈效果和潜力。

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