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Ni- and PtNi-catalysts supported on Al2O3 for acetone steam reforming: Effect of the modification of support with Ce, La and Mg

机译:Al2O3上负载的Ni和PtNi催化剂用于丙酮蒸汽重整:Ce,La和Mg改性载体的效果

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Hydrogen production from acetone steam reforming was studied using bimetallic PtNi catalysts supported on modified alumina. La-, Ce- and Mg-oxides were used as support modifiers in order to neutralize acidity and/or to improve water adsorption and OH- surface mobility of Al-2 O-3 support. Characterization of the sample showed that metal-support interactions and the size of metallic Ni at surface differ depending on the oxide added to the alumina support. Reforming activity on Ni and Pt-Ni supported on X-modified-Al-2 O-3 catalysts (X = La, Ce, or Mg) showed that both metal and support, play an essential role in the catalytic behavior on the steam reforming of acetone. The sequence of gasification capacity over monometallic samples (Ni/LaAl > Ni/MgAl > Ni/CeAl) points out that acidity of supports participates in the acetone reforming mechanism over these catalysts. Addition of Pt to monometallic Ni catalysts only has a beneficial effect on the reforming capacity of the Ni/LaAl sample. Improvement in the reforming capacity of the PtNi/LaAl catalyst is believed to be a consequence of the promoting effect of Pt that leads to an increase in the stability of metallic Ni particles on catalyst surface together with the ability of Pt to enhance the mobility of the H-atoms formed in the reaction could help the gasification of carbon precursors formed during the reforming of acetone. (C) 2014 Elsevier B.V. All rights reserved.
机译:使用改性氧化铝负载的双金属PtNi催化剂研究了丙酮蒸汽重整制氢。 La-,Ce-和Mg-氧化物被用作载体改性剂,以中和Al-2 O-3载体的酸度和/或改善其吸水率和OH-表面迁移率。样品的表征表明,取决于添加到氧化铝载体中的氧化物,金属-载体相互作用和表面金属Ni的尺寸不同。 X-修饰的Al-2 O-3催化剂(X = La,Ce或Mg)对Ni和Pt-Ni的重整活性表明,金属和载体均对蒸汽重整的催化行为起着至关重要的作用。丙酮。单金属样品的气化能力顺序(Ni / LaAl> Ni / MgAl> Ni / CeAl)指出,载体的酸度参与了这些催化剂的丙酮重整机理。在单金属Ni催化剂中添加Pt仅对Ni / LaAl样品的重整能力具有有益的影响。据信,PtNi / LaAl催化剂重整能力的提高是Pt促进作用的结果,Pt促进了金属Ni颗粒在催化剂表面的稳定性以及Pt增强PtNi / LaAl催化剂迁移率的能力。反应中形成的H原子可帮助将丙酮重整过程中形成的碳前体气化。 (C)2014 Elsevier B.V.保留所有权利。

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