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首页> 外文期刊>ChemCatChem >Discovery of Superior Cu-GaOx-HoOy Catalysts for the Reduction of Carbon Dioxide to Methanol at Atmospheric Pressure
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Discovery of Superior Cu-GaOx-HoOy Catalysts for the Reduction of Carbon Dioxide to Methanol at Atmospheric Pressure

机译:在大气压下发现用于将二氧化碳还原到甲醇的上型Cu-Gaox-Hoo催化剂

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摘要

Catalytic conversion of carbon dioxide to liquid fuels and basic chemicals by using solar-derived hydrogen at, or near, ambient pressure is a highly desirable goal in heterogeneous catalysis. If realized, this technology could lead to a more sustainable society together with decentralized power generation. A novel class of holmium-containing multi-metal oxide Cu catalysts, discovered through the application of high-throughput methods, is reported. In particular, ternary systems of Cu-GaOx-HoOy>Cu-CeOx-HoOy approximate to Cu-LaOx-HoOy supported on -Al2O3 exhibited superior methanol production (10x) with less CO formation than previously reported catalysts at 1atm pressure. Holmium was shown to be highly dispersed as few-atom clusters, suggesting that the formation of trimetallic sites could be the key for the promotion of methanol synthesis by Ho.
机译:通过使用太阳能氢气衍生的氢气或接近环境压力,催化转化二氧化碳与液体燃料和基础化学品是异构催化的一个非常理想的目标。 如果实现,这项技术可能导致更可持续的社会与分散的发电。 据报道,通过应用高通量方法发现了一种新型含钬多金属氧化物Cu催化剂。 特别地,Cu-Gaox-Hoobooy的三元体系> Cu-Ceox-Hoy对-Al2O3负载的Cu-Laox-Hoy的近似表现出优质的甲醇生产(10x),比在1ATM压力下的先前报道的催化剂较少。 Holmium被证明是高度分散的群体,表明Trimetallic位点的形成可以是促进HO的甲醇合成的关键。

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