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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Cu,Zn,Al layered double hydroxides as precursors for copper catalysts In methanol steam reforming - pH-controlled synthesis by microemulsion technique
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Cu,Zn,Al layered double hydroxides as precursors for copper catalysts In methanol steam reforming - pH-controlled synthesis by microemulsion technique

机译:铜,锌,铝层状双氢氧化物作为铜催化剂的前体甲醇蒸汽重整-微乳液技术控制pH值的合成

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摘要

By co-precipitation inside microemulsion droplets a Cu-based catalyst precursor was prepared with a Cu : Zn : Al ratio of 50 : 17 : 33. A pH-controlled synthesis was applied by simultaneous dosing of metal solution and precipitation agent. This technique allows for continuous operation of the synthesis and enables easy and feasible up-scaling. For comparison conventional co-precipitation was applied with the same composition. Both techniques resulted in phase pure layered double hydroxide precursors and finally (after calcination and reduction) in small Cu nanoparticles (8 nm) and ZnAl2O4. By applying the microemulsion technique smaller Cu/ZnAl2O4 aggregates with less embedded Cu particles were obtained. The microemulsion product exhibited a higher BET and specific Cu surface area and also a higher absolute catalytic activity in methanol steam reforming. However, the Cu surface area-normalized, intrinsic activity was lower. This observation was related to differences in interactions of Cu metal and oxide phase.
机译:通过在微乳液液滴内部共沉淀,制备了Cu:Zn:Al比为50:17:33的Cu基催化剂前体。同时控制金属溶液和沉淀剂的用量,可控制pH值。该技术允许合成的连续操作并实现简单可行的放大。为了比较,以相同的组成进行常规的共沉淀。两种技术均产生相纯的层状双氢氧化物前体,最终(在煅烧和还原后)形成小的铜纳米颗粒(8 nm)和ZnAl2O4。通过应用微乳化技术,获得了较小的Cu / ZnAl2O4聚集体,其中嵌入的Cu颗粒较少。该微乳液产物在甲醇蒸汽重整中表现出更高的BET和比Cu表面积,以及更高的绝对催化活性。然而,Cu表面积归一化的固有活性较低。该观察结果与Cu金属和氧化物相的相互作用的差异有关。

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