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A Novel Nano Fischer-Tropsch Catalyst for the Production of Hydrocarbons

机译:一种新型纳米催化剂的费的碳氢化合物的生产

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摘要

A novel silica nanospring (NS) supported cobalt catalyst for Fischer-Tropsch synthesis (FTS) was synthesized and investigated, and the results were compared with those of a conventional cobalt catalyst. The NS catalyst was prepared using deposition of Co followed by thermal assisted reduction and characterized by scanning electron microscopy-energy dispersive spectroscopy, transmission electron microscopy, N2 physi-sorption, X-ray powder diffraction, X-ray photoelectron spectroscopy, and H2-temperature programmed reduction. FTS performance was evaluated in a quartz fixed-bed microreac-tor (23°CPC, H2:CO ratio 2:1), and the products were trapped and analyzed with gas chromatography-thermal conductivity detector (GC-TCD, gases) and gas chromatography-mass spectrometry (GC-MS, semivolatiles) to determine the percentage of CO conversion and selectivity. Semivolatile products from both catalysts were C6-C_(18) hydrocarbons. Even though the NS FTS catalyst was not fully reduced during the activation period it still showed higher FTS activity than the conventional catalyst, which is attributed to the higher accessibility of the gases to the Co on the NS surface.
机译:一种新型硅nanospring钴(NS)支持费托合成催化剂(FTS)合成和调查,结果相比传统的钴吗催化剂。沉积的公司热辅助紧随其后减少和电子扫描的特征microscopy-energy色散光谱,透射电子显微镜,N2physi-sorption、x射线粉末衍射、x光光电子能谱,H2-temperature减少程序。在石英固定床microreac-tor评估(23°共产党,H2, CO比2:1),和产品被困和分析气体chromatography-thermal电导检测器(GC-TCD气体)与气相色谱光谱法(气相、半挥发性的)来确定的百分比CO转化率和选择性。半挥发性的催化剂产品C6-C_(18)碳氢化合物。催化剂没有完全在减少激活期间它仍然显示更高的罚球活动比传统的催化剂,这是归因于更高的可访问性气体Co NS表面。

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