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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Quantitative analysis of active oxygen for soot oxidation over Ag/ZrO2: Characterization with temperature-programmed reduction by NH3
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Quantitative analysis of active oxygen for soot oxidation over Ag/ZrO2: Characterization with temperature-programmed reduction by NH3

机译:用于在Ag / ZrO2上烟灰氧化的活性氧的定量分析:NH3程序升温还原的表征

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Active oxygen species for soot oxidation over Ag/ZrO2 were characterized by means of X-ray pho-toelectron spectroscopy (XPS) and temperature-programmed desorption and reduction methods. The temperature-programmed surface reaction (TPSR) between carbon black (CB), a model soot, and surface oxygen revealed that two kinds of adsorbed oxygen species were involved in CB oxidation over Ag/ZrO2. The results of XPS, temperature-programmed desorption of O2, and temperature-programmed reduction by H2 were insufficient to distinguish the two kinds of active oxygen species. Temperature-programmed reduction by NH3 (NH3-TPR) resulted in N2 and N2O formation as products of reduction of the Ag/ZrO2 surface and bulk oxygen. The N2O formation profile in NH3-TPR exhibited two peaks, corresponding to two kinds of oxygen species having a strong oxidation capacity. The effect of Ag loading on the total amount of N2O formation was in good agreement with that on the amount of active oxygen species observed by TPSR-CB. We concluded that NH3-TPR was an appropriate technique for quantitative characterization of the amount of active oxygen species for soot oxidation on Ag/ZrO2.
机译:通过X射线光电子能谱(XPS)以及程序升温脱附和还原方法对在Ag / ZrO2上烟so氧化的活性氧进行了表征。炭黑(CB),模型烟灰和表面氧之间的程序升温表面反应(TPSR)表明,两种吸附的氧物种参与了Ag / ZrO2上CB的氧化。 XPS,程序升温的O2解吸和程序升温还原H2的结果不足以区分两种活性氧。通过程序升温还原NH3(NH3-TPR)会导致N2和N2O形成,这是Ag / ZrO2表面和大量氧气还原的产物。 NH3-TPR中的N2O形成曲线显示出两个峰,对应于具有强氧化能力的两种氧。 Ag负载对N2O形成总量的影响与TPSR-CB观察到的活性氧的数量相吻合。我们得出的结论是,NH3-TPR是一种合适的技术,用于定量表征在Ag / ZrO2上烟species氧化的活性氧的数量。

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