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首页> 外文期刊>Catalysis Letters >Nanostructured Potassium-Manganese Oxides Decorated with Pd Nanoparticles as Efficient Catalysts for Low-Temperature Soot Oxidation
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Nanostructured Potassium-Manganese Oxides Decorated with Pd Nanoparticles as Efficient Catalysts for Low-Temperature Soot Oxidation

机译:用PD纳米粒子装饰纳米结构钾氧化物,作为低温烟灰氧化的有效催化剂

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摘要

Two nanostructured potassium-manganese oxides, with a layered (OL) and tunneled structure (OMS-2), were synthesized and their surface decorated with 1% Pd. All prepared samples were characterized by means of X-ray diffraction, Raman spectroscopy, N-2-BET specific surface area analysis, TPR, SEM/TEM. Catalytic activity in soot combustion in different reaction conditions was investigated (tight contact, loose contact, loose contact with NO addition). The obtained results revealed, that manganese oxides are highly catalytically active in soot combustion, shifting the reaction temperature window by 280 degrees C for OMS-2 and 300 degrees C for OL in comparison to the non-catalytic process. Furthermore, Pd promotion is beneficial in all cases, lowering the window of soot combustion compared to the unpromoted oxides, with the most significant effect for loose contact conditions. The difference in activity between tight and loose contacts can be successfully bridged in the presence of NO due to its transformation into NO2. The particular activity of 1% Pd/OMS-2 and 1% Pd/OL pave the road for their further development towards catalytic system for efficient soot removal in the conditions present in diesel exhaust gases.
机译:合成两个纳米结构钾氧化物,具有层状(OL)和隧道结构(OMS-2),其表面用1%PD装饰。通过X射线衍射,拉曼光谱,N-2-BET比表面积分析,TPR,SEM / TEM,表征所有制备的样品。研究了在不同反应条件下烟灰燃烧中的催化活性(紧密接触,松散接触,松散接触,无加)。所得到的结果显示,锰氧化物在烟灰燃烧中具有高催化活性,与非催化过程相比,OMS-2和300摄氏度的OMS-2和300℃,使反应温度窗改为OMS-2和300℃。此外,Pd促进在所有情况下都有益,与未氧化的氧化物相比,降低烟灰燃烧的窗口,具有宽松接触条件的最显着效果。由于其转化为NO2,可以在不存在的情况下成功桥接紧密和松散触点之间的差异。 1%PD / OMS-2和1%PD / OL的特定活性为其进一步发展促进催化系统,以便在柴油废气中存在的条件下高效地去除。

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