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首页> 外文期刊>Journal of Catalysis >Strong-metal-support interaction by molecular design: Fe-silicate interactions in Fischer-Tropsch catalysts
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Strong-metal-support interaction by molecular design: Fe-silicate interactions in Fischer-Tropsch catalysts

机译:通过分子设计实现强金属-载体相互作用:费托催化剂中的铁硅酸盐相互作用

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摘要

Metal-support interactions in the form of iron-silicate were investigated by an inverse approach, that is, modification of nano-sized iron oxide with surface silicate groups. The presence of surface silicate groups in the calcined catalyst precursor was confirmed using diffuse reflectance infra-red Fourier transform analysis. The genesis of the various iron phases in the presence of surface silicate groups after H _2-activation and the Fischer-Tropsch synthesis was followed. The surface silicate groups are preserved after a hydrogen treatment at 350 °C for 16 h, and these surface ligands are associated with the residual iron oxide phase, wüstite. During the Fischer-Tropsch synthesis, α-Fe is mostly converted into χ-Fe _5C _2, whereas FeO is the main source for -Fe _2C. The activity per unit surface area of hexagonal carbide, -Fe _2C, is ca. 25% higher than that of χ-Fe _5C _2. The presence of surface silicate ligands on -Fe _2C results in a further enhancement of the rate per unit surface area of -Fe _2C by a factor of ca. 3. This is being ascribed to the enhanced availability of hydrogen on the surface due to the presence of the surface silicate groups, which also results in an increase in the methane selectivity, a decrease in the olefin content and a decrease in formation of branched product compounds.
机译:通过逆方法研究了硅酸铁形式的金属-载体相互作用,即用表面硅酸基团修饰纳米级氧化铁。使用漫反射红外傅里叶变换分析确认了煅烧的催化剂前体中表面硅酸盐基团的存在。在H _2活化和费-托合成之后,在存在表面硅酸盐基团的情况下,跟踪各种铁相的成因。表面硅酸盐基团在350°C的氢气中经过16 h的氢处理后得以保留,这些表面配体与残留的氧化铁相wustite缔合。在费-托合成过程中,α-Fe大部分转化为χ-Fe_5C _2,而FeO是-Fe _2C的主要来源。六方碳化物-Fe _2C的单位表面积活度约为。比χ-Fe_5C _2高25%。 -Fe _2C上表面硅酸盐配体的存在导致-Fe _2C的每单位表面积的速率进一步提高约ca。 3.这归因于由于表面硅酸盐基团的存在,表面上氢的利用率提高,这也导致甲烷选择性提高,烯烃含量降低和支化产物形成减少化合物。

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