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Preparation of palladium based catalysts by electroless plating and their application in catalytic combustion of toluene

机译:化学镀钯催化剂的制备及其在甲苯催化燃烧中的应用

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The palladium based combustion catalysts on FeCrAl alloy substrate (Pd/FeCrAl) were prepared by electroless plating method. By means of scanning electron microscopy (SEM), X-ray diffraction and BET specific surface area, it was found that the prepared catalyst after calcination treatment at 800°C could obtain utmost PdO phases, which were well dispersed on substrate with small and uniform particles. The EDX analysis and the adherence tests further indicated that a synergistic interaction was formed between palladium components and substrate on catalyst calcined above 600°C, which might be caused by α-alumina whiskers packaging palladium particles on the surface of substrate. Moreover, the results of activity tests for toluene combustion showed that the 0.1%Pd/FeCrAl catalyst had good low temperature catalytic activity and temperature-resistance property. The total combustion temperature (T90) for toluene over catalyst calcined at 600, 800 and 1000°C was at 218, 207 and 217°C respectively. And the toluene conversion could keep up above 99% during the stability test of Pd/FeCrAl catalyst at 210°C for 50 h, indicating the good catalytic stability of Pd/FeCrAl catalyst.
机译:通过化学镀方法制备群体合金基质(Pd / Fecral)上的基于钯的燃烧催化剂。通过扫描电子显微镜(SEM),X射线衍射和BET比表面积,发现在800℃下煅烧处理后制备的催化剂可以获得最大的PDO相,其良好地分散在基板上,小且均匀地分散在基材上。粒子。 EDX分析和粘附试验进一步表明,在600℃煅烧的催化剂上的钯成分和基材之间形成协同相互作用,这可能是由α-氧化铝晶须包装在基材表面上的α-氧化铝晶须。此外,对甲苯燃烧的活性试验结果表明,0.1%Pd / Fecral催化剂具有良好的低温催化活性和耐温性。在600,800和1000℃下煅烧的甲苯的甲苯的总燃烧温度(T90)分别为218,207和217℃。并且在210℃下Pd /封态催化剂的稳定性试验期间,甲苯转化率可以在210℃的稳定性试验中保持高于99%,表明Pd / Fecral催化剂的良好催化稳定性。

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