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Improvement of thermal stability of NO oxidation Pt/Al2O3 catalyst by addition of Pd

机译:添加Pd改善NO氧化Pt / Al2O3催化剂的热稳定性

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摘要

The present work has been undertaken to tailor Pt/Al2O3 catalysts active for NO oxidation even after severe heat treatments in air. For this purpose, the addition of Pd has been attempted, which is less active for this reaction but can effectively suppress thermal sintering of the active metal Pt. Various Pd-modified Pt/Al2O3 catalysts were prepared, subjected to heat treatments in air at 800℃ and 830℃, and then applied for NO oxidation at 300℃. The total NO oxidation activity was shown to be significantly enhanced by the addition of Pd, depending on the amount of Pd added. The Pd-modified catalysts are active even after the severe heat treatment at 830℃ for a long time of 60 h. The optimized Pd-modified Pt/Al2O3 catalyst can show a maximum activity limited by chemical equilibrium under the conditions used. The bulk structures of supported noble metal particles were examined by XRD and their surface properties by CO chemisorption and EDX-TEM. From these characterization results as well as the reaction ones, the size of individual metal particles, the chemical composition of their surfaces, and the overall TOF value were determined for discussing possible reasons for the improvement of the thermal stability and the enhanced catalytic activity of Pt/Al2O3 catalysts by the Pd addition. The Pd-modified Pt/Al2O3 catalysts should be a promising one for NO oxidation of practical interest.
机译:即使在空气中进行了严格的热处理之后,也已经进行了本工作以定制对NO氧化具有活性的Pt / Al 2 O 3催化剂。为此,已经尝试添加Pd,其对于该反应而言活性较低,但是可以有效地抑制活性金属Pt的热烧结。制备了各种Pd改性的Pt / Al2O3催化剂,分别在800℃和830℃的空气中进行热处理,然后在300℃下进行NO氧化。显示出总的NO氧化活性通过添加Pd而显着增强,取决于Pd的添加量。即使在830℃下进行了60 h长时间的严格热处理后,Pd改性的催化剂仍具有活性。优化的Pd改性Pt / Al2O3催化剂在所用条件下可显示出最大的受化学平衡限制的活性。通过XRD检查负载的贵金属颗粒的整体结构,并通过CO化学吸附和EDX-TEM检查其表面性质。从这些表征结果以及反应结果中,确定了单个金属颗粒的大小,其表面的化学组成和总TOF值,以讨论改善Pt的热稳定性和增强催化活性的可能原因/ Al2O3催化剂由Pd加成。 Pd改性的Pt / Al2O3催化剂应成为具有实用价值的NO氧化催化剂。

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