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Silica-Supported Cobalt Catalysts for Fischer–Tropsch Synthesis: Effects of Calcination Temperature and Support Surface Area on Cobalt Silicate Formation

机译:费托合成用二氧化硅负载的钴催化剂:煅烧温度和载体表面积对硅酸钴形成的影响

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摘要

Cobalt silicate formation reduces the activity of the catalyst in Fischer–Tropsch synthesis (FTS). In this article, the effects of calcination temperature and support surface area on the formation of cobalt silicate are explored. FTS catalysts were prepared by incipient wetness impregnation of cobalt nitrate precursor into various silica supports. Deionized water was used as preparation medium. The properties of catalysts were characterized at different stages using FTIR, XRD and BET techniques. FTIR-ATR analysis of the synthesized catalyst samples before and after 48 h reaction identified cobalt species formed during the impregnation/calcination stage and after the reduction/reaction stage. It was found that in the reduction/reaction stage, metal-support interaction (MSI) added to the formation of irreducible cobalt silicate phase. Co/silica catalysts with lower surface area (300 m2/g) exhibited higher C5+ selectivity which can be attributed to less MSI and higher reducibility and dispersion. The prepared catalysts with different drying and calcination temperatures were also compared. Catalysts dried and calcined at lower temperatures exhibited higher activity and lower cobalt silicate formation. The catalyst sample calcined at 573 K showed the highest CO conversion and the lowest CH4 selectivity.
机译:硅酸钴的形成会降低费托合成(FTS)中催化剂的活性。本文探讨了煅烧温度和载体表面积对硅酸钴形成的影响。通过将湿润的硝酸钴前体浸渍到各种二氧化硅载体中来制备FTS催化剂。去离子水用作制备介质。使用FTIR,XRD和BET技术在不同阶段表征了催化剂的性能。在反应48小时之前和之后对合成的催化剂样品进行FTIR-ATR分析,确定了在浸渍/煅烧阶段以及还原/反应阶段之后形成的钴物种。发现在还原/反应阶段,金属-载体相互作用(MSI)增加了不可还原的硅酸钴相的形成。较低表面积(300 m2 / g)的Co /二氧化硅催化剂表现出较高的C5 + 选择性,这归因于MSI较少,还原性和分散性较高。还比较了干燥和煅烧温度不同的催化剂。在较低温度下干燥和煅烧的催化剂表现出较高的活性和较低的硅酸钴形成。在573 K下煅烧的催化剂样品表现出最高的CO转化率和最低的CH4 选择性。

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