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Novel cobalt zinc oxide Fischer-Tropsch catalysts synthesised using supercritical anti-solvent precipitation

机译:使用超临界反溶剂沉淀法合成的新型钴氧化锌费-托催化剂

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摘要

Cobalt zinc oxide catalysts have been prepared by anti-solvent precipitation in supercritical CO2 and investigated for CO hydrogenation. Here we show how the textural and catalytic properties of the catalyst can be tailored by the addition of water to the initial solution of cobalt and zinc acetates in methanol. Characterization of the catalysts by powder X-ray diffraction, infra-red and Raman spectroscopy showed that in the absence of water a high surface area mixed acetate was produced which upon calcination formed wurtzite type Zn1−xCoxO and spinel type ZnxCo3−xO4. The addition of 5 vol.% water resulted in a phase separated Co3O4/ZnO catalyst and enhanced active cobalt surface area as a result of disruption of the solvent/CO2 phase equilibrium during precipitation.
机译:钴锌氧化物催化剂是通过在超临界CO2中进行反溶剂沉淀制备的,并已进行了CO加氢研究。在这里我们展示了如何通过向钴和乙酸锌在甲醇中的初始溶液中添加水来调整催化剂的质构和催化性能。通过粉末X射线衍射,红外和拉曼光谱对催化剂进行表征,结果表明,在不存在水的情况下,会产生高表面积的混合乙酸盐,在煅烧时会形成纤锌矿型Zn1-xCoxO和尖晶石型ZnxCo3-xO4。由于沉淀过程中溶剂/ CO 2相平衡的破坏,添加5体积%的水导致相分离的Co 3 O 4 / ZnO催化剂和增强的活性钴表面积。

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