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In situ study of the formation and stability of supported Pd _2Ga methanol steam reforming catalysts

机译:负载型Pd _2Ga甲醇水蒸气重整催化剂的形成及其稳定性的原位研究。

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Pd/Ga _2O _3 methanol steam reforming (MSR) catalysts were characterized in detail by utilizing a range of in situ techniques of varying surface sensitivity. Correlating the nature of the intermetallic Pd-Ga compound (IMC; formed upon reduction) with the corresponding activity/selectivity revealed pronounced differences. Generally, a dynamic response of the catalyst surface to the surrounding gas environment was observed. Special attention was paid to the bulk and surface stability of the Pd-Ga IMCs. Whereas the bulk was stable in O _2, decomposition of the surface occurred resulting in a partial coverage by Ga _xO _y islands. In addition, the main formation mechanism of undesired CO and therefore the reason limiting the selectivity to MSR were identified. CO was shown to have a detrimental effect on the selective Pd-Ga intermetallic compound, causing partial decomposition of the IMC to metallic Pd at the surface. Consequently, patches of Pd metal are present under reaction conditions, catalyzing the unwanted parallel methanol decomposition reaction.
机译:Pd / Ga _2O _3甲醇蒸汽重整(MSR)催化剂的特点是,利用了一系列改变表面灵敏度的原位技术。将金属间Pd-Ga化合物(IMC;还原时形成)的性质与相应的活性/选择性相关联,显示出明显的差异。通常,观察到催化剂表面对周围气体环境的动态响应。特别注意了Pd-Ga IMC的体积和表面稳定性。尽管块体在O _2中是稳定的,但表面发生了分解,导致Ga _xO _y岛部分覆盖。另外,确定了不希望的CO的主要形成机理,并因此确定了限制对MSR的选择性的原因。已表明,CO对选择性Pd-Ga金属间化合物具有有害作用,导致IMC在表面部分分解为金属Pd。因此,在反应条件下会存在Pd金属的碎片,从而催化不需要的平行甲醇分解反应。

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