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Steam Reforming of Ethanol Over Supported Co and Ni Catalysts

机译:负载钴和镍催化剂上乙醇的水蒸气重整

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The ethanol steam reforming has been investigated over supported cobalt catalysts at atmospheric pressure. About 12% cobalt was supported on Al2O3, SiO2 and TiO2, and a commercial Ni/Al2O3 catalyst (G90B) was included for comparative purposes. The selectivity was found to depend strongly on the support, especially at low and medium temperatures. The initial activity of the cobalt catalysts correlated well with the metal dispersion. Acetaldehyde was an important C-containing product at low temperatures, whereas at high temperatures CO, CO2 and CH4 dominated the product spectrum. A significant production of ethene was observed, especially on the alumina-supported catalysts. The results are in agreement with a mechanism involving acetaldehyde as an intermediate in the steam reforming. At high temperatures (>550 °C) the conversion was complete and the product distribution approaches the equilibrium. The H2 yield approached 5 moles H2/mole ethanol converted, which is close to the maximum according to thermodynamic calculations. The alumina-supported catalysts (both Co and Ni) showed acceptable deactivation rates, but high carbon formation.
机译:已经在大气压下在负载的钴催化剂上研究了乙醇蒸汽重整。大约12%的钴负载在Al2 O3 ,SiO2 和TiO2 上,而商用Ni / Al2 O3 催化剂(G90B)出于比较目的而包括在内。发现选择性很大程度上取决于载体,特别是在低温和中温下。钴催化剂的初始活性与金属分散性密切相关。乙醛在低温下是一种重要的含碳产物,而在高温下,CO,CO2 和CH4 占主导地位。观察到大量乙烯的产生,特别是在氧化铝负载的催化剂上。该结果与涉及乙醛作为蒸汽重整中的中间体的机理一致。在高温(> 550°C)下,转化完成,产物分布接近平衡。 H 2的产率接近5摩尔H 2 /摩尔转化的乙醇,根据热力学计算,该产率接近最大值。氧化铝负载的催化剂(Co和Ni)均显示出可接受的失活速率,但形成的碳较高。

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