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首页> 外文期刊>ChemCatChem >Rare-Earth-Doped Pt/Ba/Ce0.6Zr0.4O2-Al2O3 for NOx Storage and Reduction: The Effect of Rare-Earth Doping on Efficiency and Stability
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Rare-Earth-Doped Pt/Ba/Ce0.6Zr0.4O2-Al2O3 for NOx Storage and Reduction: The Effect of Rare-Earth Doping on Efficiency and Stability

机译:稀土掺杂PT / BA / CE0.6ZR0.4O2-AL2O3用于NOx储存和减少:稀土掺杂对效率和稳定性的影响

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摘要

Rare-earth-doped Pt/Ba/RO-CZA (RO=La2O3, Nd2O3 and Y2O3; CZA=Ce0.6Zr0.4O2-Al2O3) were synthesized and characterized by XRD, N-2 physisorption, Raman spectroscopy, H-2 temperature-programmed reduction, extended X-ray absorption fine structure analysis, scanning transmission electron microscopy, and X-ray photoelectron spectroscopy. The effect of the addition of rare earths on Pt/Ba/RO-CZA was explored, and the relationship between their structures and properties was disclosed. In comparison with Pt/Ba/CZA, La and Nd addition, especially La addition, resulted in an apparent increment of oxygen vacancies and the improvement of the reductive capacity of Ce4+, which are favorable for NOx reduction. However, the presence of Y induced a negative effect on NOx storage and reduction (NSR). The NSR performances of Pt/Ba/RO-CZA were initially evaluated by using NO-to-NO2 conversion, NOx storage capacity, and NOx conversion. The NOx conversion in Pt/Ba/La-CZA and Pt/Ba/Nd-CZA at 350 degrees C is up to 98 and 94%, respectively. Interestingly, the addition of rare earths contributes to the enhancement of the thermal stability, a slight decrement of NOx conversion was observed after Pt/Ba/RO-CZA were maintained at 350 degrees C for 100h, whereas an obvious loss of catalytic activity was found in Pt/Ba/CZA under the same conditions. TEM analysis showed that the presence of La inhibits the agglomeration of Pt and the sintering of particles.
机译:合成稀土掺杂Pt / Ba / Ro-CZA(RO = La2O3,Nd2O3和Y2O3; CZA = Ce0.6Zr0.4O2-Al2O3),其特征在于XRD,N-2物理吸附,拉曼光谱,H-2温度 - 预编程的还原,延伸的X射线吸收细结构分析,扫描透射电子显微镜和X射线光电子能谱。探讨了稀土对Pt / BA / RO-CZA的影响,公开了其结构与性能之间的关系。与PT / BA / CZA,LA和ND添加,尤其是La添加,导致氧空位的表观增量和CE4 +的还原能力的改善,这有利于降低NOx。然而,Y诱导对NOx储存和还原(NSR)产生的负面影响。最初通过使用NO-NO 2转化,NOx存储容量和NOx转换来评估PT / BA / RO-CZA的NSR性能。 Pt / Ba / La-CZA和Pt / Ba / Nd-Cza中的NOx转化分别为350℃,分别为98和94%。有趣的是,稀土的添加有助于提高热稳定性,在Pt / Ba / Ro-Cza保持在350℃下100h后观察到NOx转化率的轻微衰落,而发现催化活性的明显丧失在相同条件下Pt / Ba / Cza。 TEM分析表明,La的存在抑制了Pt的聚集和颗粒的烧结。

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