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Enhanced catalytic performance of La_2O_3 promoted Co/CeO_2 and Ni/CeO_2 catalysts for effective hydrogen production by ethanol steam reforming

机译:La_2O_3的增强催化性能促进Co / CeO_2和Ni / CeO_2催化剂,用于通过乙醇蒸汽重整产生有效的氢气产生

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Cobalt: and nickel-based catalysts were synthesized by the co-impregnation method of the ceria support with aqueous solution of the active phase and promoter precursors and evaluated in steam reforming of ethanol (SRE) reaction. The stability of Co/CeO2 and Ni/CeO2 catalysts was effectively improved by the addition of similar to 2 wt% of La2O3 promoter as the carbon deposition rate was reduced which results from an increase in an active phase dispersion and from strengthening of a metal-support interactions. Whereas the La2O3 promoter influences on the rate of carbon deposit formation, its type and a degree of graphitization depends on the metal active phase. Highly ordered carbon deposit encapsulating the active sites was mainly formed on the surface of cobalt-based catalysts. Whereas SRE reaction over nickel-based catalysts leads to formation of long filaments carbon with a lower degree graphitization. Temperature of 460 degrees C was sufficient to obtain complete ethanol conversion for 21 h of SRE process over Ni-0.1La/CeO2 sample and to maintain high selectivity to H-2 (88%) and CO2 (68%) over this time. For Co-0.1La/CeO2 catalyst, the higher temperature of 500 degrees C was required to sustain its stable operation but selectivity to H-2 and CO2 was even higher, 94% and 88%, respectively. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:通过CERIA载体的共浸渍方法与活性相和启动子前体的水溶液合成,合成钴基催化剂,并在乙醇(SRE)反应中评价。通过加入类似于2wt%的La2O3启动子,有效地改善了Co / CeO2和Ni / CeO 2催化剂的稳定性,因为碳沉积速率降低,这是由有源相分散的增加和强化金属的增加来产生支持互动。虽然La2O3启动子对碳沉积物形成的速率影响,其类型和石墨化程度取决于金属活性相。封装活性位点的高度有序的碳沉积主要形成在基于钴基催化剂的表面上。然而,在镍基催化剂上的反应导致具有较低程度的石墨化的长丝碳。 460℃的温度足以获得在Ni-0.1La / CeO 2上的SRE加工21小时的完全乙醇转化率,并在此时间内保持高选择性(88%)和CO 2(68%)。对于CO-0.1LA / CeO 2催化剂,需要较高的500℃的温度来维持其稳定操作,但对H-2和CO 2的选择性分别更高,94%和88%。 (c)2020作者。 elsevier有限公司出版

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