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Biofuels Produced by Fischer-Tropsch Synthesis over Silica-supported Iron-Based Catalysts Prepared by Autocombustion Method

机译:由Fischer-Tropsch合成的生物燃料在通过自动掩模方法制备的二氧化硅载体的铁基催化剂。

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The purpose of this study was to evaluate the effect of different silica types on iron (Fe)-based catalysts containing copper and potassium prepared by autocombustion for direct use in Fischer-Tropsch Synthesis (FTS) without a reduction step. The catalysts were characterized through nitrogen (N2) adsorption, X-ray diffraction (XRD), and transmission electron microscopy (TEM). The FTS performance of each catalyst was evaluated in a fixed-bed reactor at 300 ?C, 1.0 MPa, a catalyst weight to volume flow rate of 10 gcat h/mol and a hydrogen (H2)/carbon monoxide (CO) molar ratio of 1. The pore size of the silica had an important influence on the formation of the Fe active phases and subsequent FTS activity. The presence of iron carbide (FexC), which is known to be one of the active Fe phases, was demonstrated by the XRD and TEM analyses. Larger crystallite sizes in the large pores were much easier to accommodate FexC than the smaller crystallite sizes in the small pores. The Fe-based catalysts supported on the silica with the largest pores gave the highest CO conversion level at 86.5%, with a 28.1% C2–4 selectivity and 17.3% C5+ selectivity under these operating conditions. Interestingly, this is an alternative approach to synthesize nanostructured metallic catalysts on silica and to produce clean biofuel for the fuel industry and transportation.
机译:本研究的目的是评估不同二氧化硅类型对含有通过自容量制备的铜和钾的铁(Fe)的催化剂的效果,无需减少步骤即可直接用在Fischer-Tropsch合成(FTS)中。通过氮气(N 2)吸附,X射线衍射(XRD)和透射电子显微镜(TEM)表征催化剂。在300℃,1.0MPa的固定床反应器中评价每种催化剂的FTS性能,催化剂重量为10Gcat h / mol的体积流速和氢气(H2)/一氧化碳(CO)摩尔比1.二氧化硅的孔径对Fe活性阶段和随后的FTS活性的形成具有重要影响。通过XRD和TEM分析证明了已知是有源Fe阶段之一的碳化铁(FEXC)的存在。大孔隙中的较大的微晶尺寸更容易容纳Fexc,而不是小孔隙中的较小的微晶尺寸。在二氧化硅上负载的Fe基催化剂具有最大孔的CO转化水平为86.5%,在这些操作条件下具有28.1%C2-4选择性和17.3%C5 +选择性。有趣的是,这是一种合成二氧化硅上的纳米结构金属催化剂的替代方法,并为燃料工业和运输产生清洁生物燃料。

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