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首页> 外文期刊>RSC Advances >Nanoparticles of Cu-Co alloy supported on high surface area LaFeO3-preparation and catalytic performance for higher alcohol synthesis from syngas
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Nanoparticles of Cu-Co alloy supported on high surface area LaFeO3-preparation and catalytic performance for higher alcohol synthesis from syngas

机译:高表面积LaFeO3制备负载的Cu-Co合金纳米颗粒及其合成气催化高级醇合成的催化性能

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摘要

LaFeO3 supported Cu-Co bimetallic catalysts with high surface area and mesoporosity were prepared by impregnation combined with nanocasting method, and the resulting catalysts were used for higher alcohol synthesis (HAS) from syngas. These catalysts were characterized by using N-2 adsorption and desorption, X-ray diffraction, temperature programmed reduction, transmission electron microscopy and energy dispersive spectrometry techniques. The results showed that the catalysts were highly active and selective to higher alcohols, and meanwhile stable for HAS. Characterization results indicated that Cu-Co was in the state of a solid solution alloy in the reduced catalysts, and the formation of Cu-Co alloy led to the high selectivity to higher alcohols. The elements in the catalysts were uniformly mixed and in interaction, thus sintering of the nanoparticles in the catalysts was restricted, resulting in a good stability. The high activity was mainly attributed to the high surface area and mesoporosity. Compared with Cu-Co/LaFeO3 prepared by conventional methods, Cu-Co/LaFeO3 with higher surface area and mesoporosity exhibited better activity and higher selectivity to higher alcohols. This design scheme may be applied to other bimetallic catalysts, and many transition metal ions can act as the lattice ions of perovskite-type oxides besides copper and cobalt.
机译:通过浸渍法和纳米浇铸法制备了高比表面积和介孔率的LaFeO3负载的Cu-Co双金属催化剂,并将其用于合成气的高级醇合成(HAS)。这些催化剂的特征在于使用N-2吸附和解吸,X射线衍射,程序升温还原,透射电子显微镜和能量分散光谱技术。结果表明,该催化剂具有较高的活性,对高级醇具有选择性,并且对HAS稳定。表征结果表明,Cu-Co在还原催化剂中呈固溶体状态,Cu-Co合金的形成导致对高级醇的高选择性。催化剂中的元素均匀混合并相互作用,因此限制了催化剂中纳米颗粒的烧结,从而获得了良好的稳定性。高活性主要归因于高表面积和中孔性。与通过常规方法制备的Cu-Co / LaFeO3相比,具有更高的表面积和介孔率的Cu-Co / LaFeO3表现出更好的活性和对高级醇的更高选择性。该设计方案可以应用于其他双金属催化剂,除铜和钴外,许多过渡金属离子还可以作为钙钛矿型氧化物的晶格离子。

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