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Polyol Synthesis of Cobalt-Copper Alloy Catalysts for Higher Alcohol Synthesis from Syngas

机译:钴 - 铜合金催化剂的多元醇合成醇合成醇合成

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摘要

Novel catalysts for the selective production of higher alcohols from syngas could offer improved pathways towards synthetic fuels and chemicals. Cobalt-copper alloy catalysts have shown promising results for this reaction. To improve control over particle properties, a liquid phase nanoparticle synthesis based on the polyol method was selected to synthesize Co2.5Cu particles, which were then supported onto a variety of metal oxide supports (Al2O3, SiO2, TiO2, ZrO2). The catalysts were characterized by transmission electron microscopy, X-ray diffraction, and X-ray photoelectron spectroscopy before and after catalytic testing in a flow reactor at 250 A degrees C and 40 bar. The results show alloyed phases were obtained using the polyol method, resulting in selectivity towards higher alcohols, as high as 11.3% when supported on alumina. Segregation of cobalt and the formation of cobalt carbide were observed in the catalysts after catalytic testing, which may limit performance compared to the desired alloy phase.
机译:用于选择性生产高级醇的新型催化剂可以为合成燃料和化学品提供改善的途径。钴 - 铜合金催化剂已经显示了该反应的有希望的结果。为了改善对颗粒性能的控制,选择基于多元醇法的液相纳米颗粒合成合成CO 2 .5Cu颗粒,然后将其支持在各种金属氧化物载体上(Al 2 O 3,SiO 2,TiO 2,ZrO2)。催化剂的表征通过透射电子显微镜,X射线衍射和X射线光电子能量在250℃和40巴的流动反应器中催化测试之前和之后和之后。结果表明使用多元醇法得到合金相,导致在氧化铝上负载时对高醇的选择性高达11.3%。在催化剂测试后在催化剂中观察到钴的偏析和碳化钴的形成,其可能与所需合金相相比限制性能。

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