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Three-way catalytic properties and microstructures of metallic glass driven composite catalysts

机译:金属玻璃驱动复合催化剂的三元催化性能和微观结构

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摘要

Pd-dispersed composite catalysts were derived from Zr2Pd-based metallic glasses; Zr65Pd35, Zr65Pd30Pt5 and Zr50Pd35Ce15 by heat treatment at 600 degrees C in air, and their catalytic properties were evaluated. The results of the X-ray diffraction (XRD) analysis indicated that the PdO phase mainly formed in Zr65Pd35 catalyst and the metallic Pd phase formed in Zr65Pd30Pt5 and Zr50Pd35Ce15 catalysts. The scanning electron microscopic (SEM) images showed that the size of the Pd (PdO) particles increases with addition of Pt and Ce into Zr2Pd metallic glass. The three-way catalytic (TWC) activity of Zr50Pd35Ce15 catalyst was lower than that of the others. The differences of catalytic activity between Zr65Pd35 catalyst and Zr65Pd30Pt5 catalyst were very slight, although the former had smaller Pd particles than that of the latter. The XRD and XAFS results showed that the PdO phase of Zr65Pd30Pt5 catalyst transformed to the metallic Pd phase after catalytic activity test. The redox potential of Pd2+/Pd-0 was important for the catalytic activity. The catalytic properties were influenced by the morphology and chemical state of Pd phase in these catalysts. Since these properties were controlled in these catalysts, new type materials derived from metallic glass was proposed toward the property of TWC in this work.
机译:以Zr2Pd基金属玻璃为原料制备了钯分散复合催化剂;在空气中600℃热处理Zr65Pd35、Zr65Pd30Pt5和Zr50Pd35Ce15,并对其催化性能进行了评价。X射线衍射(XRD)分析结果表明,PdO相主要形成于Zr65Pd35催化剂中,金属钯相主要形成于Zr65Pd30Pt5和Zr50Pd35Ce15催化剂中。扫描电子显微镜(SEM)图像显示,在Zr2Pd金属玻璃中加入Pt和Ce后,Pd(PdO)颗粒的尺寸增大。Zr50Pd35Ce15催化剂的三效催化活性低于其他催化剂。Zr65Pd35催化剂和Zr65Pd30Pt5催化剂之间的催化活性差异很小,尽管前者的Pd颗粒比后者小。XRD和XAFS结果表明,经过催化活性测试,Zr65Pd30Pt5催化剂的PdO相转变为金属钯相。Pd2+/Pd-0的氧化还原电位对催化活性有重要影响。催化剂中钯相的形态和化学状态对其催化性能有影响。由于这些性能是由这些催化剂控制的,因此本研究针对TWC的性能提出了新型金属玻璃材料。

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