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Use of Perovskite-Type Lanthanum Nickelate Synthesized by the Polymeric Precursor Method in the Steam Reforming Reaction of Methane

机译:聚合前体法合成钙钛矿型镍酸镧在甲烷蒸汽重整反应中的应用

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In the current work, LaNiO3 perovskite was synthesized using the polymeric precursor method. The materials were thermally treated at 300°C for 2 hours, subsequently supported on alumina or zirconia and finally calcined at 800°C for 4 hours. The resulting samples were characterized by X-ray diffraction, thermogravimetry, BET surface area and thermo-programmed reduction. Steam reforming reactions were carried out at 750°C and 6 bar during 4 hours using a pilot reactor under a H2O:CH4 ratio of 2.5. The mass of catalysts was about 5.7 g. X-ray diffraction patterns confirmed the formation of the perovskite structure in all samples prepared. The results also showed that lanthanum nickelate was more efficient when supported on alumina than zirconia. Finally, it was observed that the methane conversion was approximately 94% and the selectivity to hydrogen was about 70%. In all cases low selectivity to CO and CO2 was verified.
机译:在当前的工作中,使用聚合物前驱体方法合成了LaNiO3钙钛矿。将该材料在300℃下热处理2小时,随后负载在氧化铝或氧化锆上,最后在800℃下煅烧4小时。所得样品通过X射线衍射,热重分析,BET表面积和热程序还原进行表征。使用中试反应器在H2O:CH4的比率为2.5的情况下,在750°C和6 bar的压力下进行4小时的蒸汽重整反应。催化剂的质量为约5.7g。 X射线衍射图证实在所有制备的样品中钙钛矿结构的形成。结果还表明,镍酸镧负载在氧化铝上比氧化锆更有效。最后,观察到甲烷的转化率约为94%,对氢的选择性约为70%。在所有情况下,都证实了对CO和CO2的低选择性。

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