费托合成的应用综述

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引用次数: 0

摘要

研究Ru/钴/SBA-15催化剂在费托合成(FTS)中的催化性能。以稻壳灰(RHA)和正硅酸四乙酯(TEOS)为原料,水热法制备了SBA-15分子筛。采用湿浸渍法制备Ru促进的Co/SBA-15催化剂,并通过x射线衍射、x射线能量色散分光光度计、N2吸附-解吸、程序升温还原和透射电镜对催化剂进行了表征。利用这些催化剂进行了费托合成,考察了催化剂的活性及其对FTS产物分布的影响。在513 K, 20 atm, CO: H2摩尔比为1:2的料浆反应器中进行了合成。x射线衍射表明,煅烧后的钴催化剂没有改变SBA-15的结构,证明Co以Co3O4的形式存在于催化剂中。在SBA-15中加入钴降低了分子筛的比表面积。通过RTP分析发现了典型的氧化铁相的温度还原范围。钌的加入提高了费托合成活性和C5+的选择性。活性和选择性的提高是由于Ru和Co的高还原性和协同效应导致活性位点数量的增加。最有趣的事实是,使用该催化体系,用替代二氧化硅和廉价(稻壳灰)制备的催化剂在液体产物中表现出很高的选择性,即在含C5+的碳氢化合物中(88.2% w/w)。高于用常规二氧化硅源制备的催化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application fischer-tropsch synthesis: a review
This work was to evaluate the catalytic properties Ru/Cobalt/SBA-15 catalyst for Fischer-Tropsch synthesis (FTS). The molecular sieve SBA-15 synthesized by hydrothermal method with rice husk ashes (RHA) and with tetraethyl orthosilicate (TEOS). The Ru promoted Co/SBA-15 catalyst was prepared by wet impregnation method and was characterized by X-ray diffraction, X-ray energy dispersion spectrophotometer, N2 adsorption-desorption, temperature-programmed reduction and transmission electron microscopy. The Fischer-Tropsch synthesis using the catalysts were carried out to evaluate the catalysts activities and its effect on FTS product distribution. The synthesis was carried out in a slurry reactor operating at 513 K, 20 atm, CO : H2 molar ratio of 1 : 2. X-ray diffraction showed that the calcined cobalt catalyst did not modify the structure of SBA-15, proving that Co was present under the form of Co3O4 in the catalyst. The addition of cobalt in SBA-15 decreased the specific superficial area of the molecular sieve. By RTP results was found the ranges of temperature reduction typical of iron oxides phases. Fischer-Tropsch synthesis activity and C5+hydrocarbon selectivity increased with the addition of Ru. The increases in activity and selectivity were attributed to the increased number of active sites resulting from higher reducibility and the synergetic effect of Ru and Co. The most interesting fact to be pointed out is that the use of this catalytic system for the catalyst prepared with alternative source of silica and cheap (rice hull ash) showed high selectivity in liquid products, that is, in hydrocarbons with C5+ (88.2% w/w), higher than the catalyst prepared with conventional silica source.
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