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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Studies on catalytic performance of precipitated iron/silica catalysts for Fischer-Tropsch Synthesis
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Studies on catalytic performance of precipitated iron/silica catalysts for Fischer-Tropsch Synthesis

机译:费-托合成沉淀铁/二氧化硅催化剂的催化性能研究

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The effects of coprecipitated silica were investigated in iron-based catalysts for Fischer-Tropsch Synthesis (FTS). Silica-containing catalysts exhibited micro pores (<10 nm) and large specific surface areas, while the silica-free catalyst had large pores (10-100 nm) and low specific surface area.Coprecipitated silica enhances the productivity of hydrocarbon for FTS, especially C5+ hydrocarbon selectivity.Silica-free and silica-containing iron catalyst showed high activity and stability over 100 h test, and exhibited little difference of the product selectivity (olefin/paraffin ratio) over the temperature range of 513-553 K.An iron catalyst has higher activity with the low H2/CO ratio (0.4-1.0). Thus, an iron catalyst has the advantage in applications to coal-derived gas, as compared to the cobalt-based catalyst.
机译:在费托合成(FTS)的铁基催化剂中研究了共沉淀二氧化硅的作用。含二氧化硅的催化剂表现出微孔(<10 nm)和大的比表面积,而不含二氧化硅的催化剂具有大的孔(10-100 nm)和低的比表面积。共沉淀二氧化硅可提高FTS的烃产率,特别是C5 +烃的选择性。无二氧化硅和含二氧化硅的铁催化剂在100小时的测试中表现出高活性和稳定性,并且在513-553 K的温度范围内产物选择性(烯烃/石蜡比)的差异很小。 H2 / CO比低(0.4-1.0)时具有较高的活性。因此,与钴基催化剂相比,铁催化剂在应用于煤衍生的气体方面具有优势。

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