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Ag–K/MnO2 nanorods as highly efficient catalysts for formaldehyde oxidation at low temperature

机译:Ag-K / MnO2纳米棒是低温下甲醛氧化的高效催化剂

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摘要

A series of Ag–K/MnO _(2) nanorods with various molar ratios of K/Ag were synthesized by a conventional wetness incipient impregnation method. The as-prepared catalysts were used for the catalytic oxidation of HCHO. The Ag–K/MnO _(2) nanorods with an optimal K/Ag molar ratio of 0.9 demonstrated excellent HCHO conversion efficiency of 100% at a low temperature of 60 °C. The structures of the samples were investigated by BET, TEM, SEM, XRD, H _(2) -TPR, O _(2) -TPD and XPS. The results showed that Ag–0.9K/MnO _(2) -r exhibited more facile reducibility and greatly abundant surface active oxygen species, endowing it with the best catalytic activity of the studied catalysts. This work provides new insights into the development of low-cost and highly efficient catalysts for the removal of HCHO.
机译:通过常规的湿法初始浸渍法合成了一系列具有不同摩尔比的K / Ag的Ag-K / MnO _(2)纳米棒。所制备的催化剂用于HCHO的催化氧化。最佳K / Ag摩尔比为0.9的Ag-K / MnO _(2)纳米棒在60°C的低温下表现出100%的出色HCHO转化效率。通过BET,TEM,SEM,XRD,H_(2)-TPR,O_(2)-TPD和XPS研究了样品的结构。结果表明,Ag–0.9K / MnO _(2)-r表现出更高的还原性和极大的表面活性氧种类,使其具有所研究催化剂的最佳催化活性。这项工作为开发低成本和高效去除HCHO的催化剂提供了新见解。

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