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Bimetallic Nanoparticles as a Model System for an Industrial NiMo Catalyst

机译:双金属纳米颗粒作为工业NiMo催化剂的模型系统

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摘要

An in-depth understanding of the reaction mechanism is required for the further development of Mo-based catalysts for biobased feedstocks. However, fundamental studies of industrial catalysts are challenging, and simplified systems are often used without direct comparison to their industrial counterparts. Here, we report on size-selected bimetallic NiMo nanoparticles as a candidate for a model catalyst that is directly compared to the industrial system to evaluate their industrial relevance. Both the nanoparticles and industrial supported NiMo catalysts were characterized using surface- and bulk-sensitive techniques. We found that the active Ni and Mo metals in the industrial catalyst are well dispersed and well mixed on the support, and that the interaction between Ni and Mo promotes the reduction of the Mo oxide. We successfully produced 25 nm NiMo alloyed nanoparticles with a narrow size distribution. Characterization of the nanoparticles showed that they have a metallic core with a native oxide shell with a high potential for use as a model system for fundamental studies of hydrotreating catalysts for biobased feedstocks.
机译:为了进一步开发用于生物基原料的Mo基催化剂,需要对反应机理有深入的了解。然而,对工业催化剂的基础研究具有挑战性,并且通常使用简化的系统而不将其与工业对应物进行直接比较。在这里,我们报告选择尺寸的双金属NiMo纳米颗粒作为模型催化剂的候选者,将其直接与工业系统进行比较以评估其工业相关性。使用表面敏感和本体敏感技术对纳米颗粒和工业负载的NiMo催化剂进行了表征。我们发现工业催化剂中的活性镍和钼金属在载体上分散良好并且混合良好,镍和钼之间的相互作用促进了钼氧化物的还原。我们成功生产了尺寸分布窄的25 nm NiMo合金纳米颗粒。纳米粒子的表征表明,它们具有带天然氧化物壳的金属核,具有很高的潜力,可用作生物基原料加氢处理催化剂基础研究的模型系统。

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