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Role of ruthenium on the catalytic properties of CeZr and CeZrCo mixed oxides for glycerol steam reforming reaction toward H-2 production

机译:钌对CeZr和CeZrCo混合氧化物催化甘油蒸汽重整反应生成H-2的作用

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The effect of ruthenium on the physico-chemical properties of CeZr and CeZrCo mixed oxides for H-2 production by glycerol steam reforming reaction has been studied. The combination of in situ Raman spectroscopy under both reductive and oxidative conditions, H-2/O-2 pulses and XRD, Raman, BET analysis, H-2-TPR and TPD-TPO analyses contributed to the determination of the structural and textural properties, redox behavior, re-oxidation capacity and resistance to carbon deposition of the synthesized catalysts. The results show that the catalytic activity is improved by the (positive) cooperative and complementary effect between cobalt and ruthenium that favors the selectivity toward the steam reforming, selective to H-2, with respect to the unselective thermal decomposition of glycerol. Ruthenium stabilizes the cobalt cations inserted in the fluorite structure preventing its rejection as Co3O4; and provides the necessary hydrogen to reduce Ce4+. The combination cobalt-ruthenium modifies positively the redox properties of the catalysts, increases the re-oxidation capacity (OSC) and promotes the gasification of the carbon deposits. Under the reaction conditions, the decrease in glycerol conversion came along with a change of selectivity. The formation of H-2 and CO2 were strongly decreased, while the formation of CO, C2H4 and condensable products (mainly hydroxyacetone) increase. The differences in the catalytic stability and activity of the catalysts are related to the capability of the catalysts to activate H2O under the reaction conditions, favoring the steam reforming reaction over the thermal decomposition. (C) 2014 Elsevier B.V. All rights reserved.
机译:研究了钌对甘油蒸汽重整反应生产H-2的CeZr和CeZrCo混合氧化物的物理化学性质的影响。还原和氧化条件下原位拉曼光谱,H-2 / O-2脉冲和XRD,拉曼,BET分析,H-2-TPR和TPD-TPO分析的结合有助于确定结构和织构性质,氧化还原行为,再氧化能力和合成催化剂的抗碳沉积性。结果表明,相对于甘油的非选择性热分解,钴和钌之间的(正)协作和互补作用提高了催化活性,该有利和有利于蒸汽重整的选择性(对H-2选择性)。钌可稳定插入萤石结构中的钴阳离子,从而防止其作为Co3O4被排斥。并提供必要的氢以还原Ce4 +。钴-钌的组合可积极地改变催化剂的氧化还原性能,增加重氧化能力(OSC),并促进碳沉积物的气化。在反应条件下,甘油转化率的降低伴随着选择性的变化。 H-2和CO2的形成大大减少,而CO,C2H4和可冷凝产物(主要是羟基丙酮)的形成增加。催化剂的催化稳定性和活性的差异与催化剂在反应条件下活化H2O的能力有关,有利于蒸汽重整反应而不是热分解。 (C)2014 Elsevier B.V.保留所有权利。

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