...
首页> 外文期刊>Catalysis science & technology >Ageing induced improvement of methane oxidation activity of Pd/YFeO3
【24h】

Ageing induced improvement of methane oxidation activity of Pd/YFeO3

机译:衰老诱导的PD/YFEO3甲烷氧化活性的改善

获取原文
获取原文并翻译 | 示例
           

摘要

The ageing characteristics of flame-made 2 wt% Pd supported on YFeO3 were analysed in comparison with a Pd/Al2O3-CeO2-ZrO2 three-way catalyst (TWC) with respect to structural changes and catalytic performance for methane oxidation under stoichiometric reaction conditions. Thermal treatment under lean conditions (air, 900 °C) resulted in slight decrease in the methane oxidation activity of the TWC. In marked contrast, YFeO3-supported Pd catalysts exhibit an increase in activity after such treatment. Activity enhancement is even higher when the treatment was performed under stoichiometric conditions (air-fuel equivalence ratio, X = 1, 900 °C). To explain this observation, in-depth characterization (BET, STEM, OSCC, XAS, and CO chemisorption) of fresh and aged catalysts was performed. Both thermal and stoichiometric ageing cause a severe sintering of the support particles and the phase transformation from hexagonal to orthorhombic YFeO3. Despite the absence of a mixed Pd-YFeO3 phase, the growth of Pd particles appears to be limited under the λ = 1 atmosphere. In contrast to thermally aged catalysts where large PdO particles are formed, well-defined metallic Pd nanoparticles of 10-20 nm are present after stoichiometric ageing along with higher methane oxidation activity. Although it is tempting to conclude that metallic Pd is active for methane oxidation under the given conditions, reversible and periodic partial oxidation of the large metallic particles is observed in modulation excitation high energy X-ray diffraction (HXRD) experiments designed to simulate the oscillating redox conditions experienced during operation. These results indicate that large Pd particles exhibit improved methane oxidation activity but equally confirm that activity under stoichiometric conditions is the result of a delicate equilibrium dictated by the bulk-Pd/surface-PdO pair.
机译:与在sto色反应条件下甲烷氧化的结构变化和催化性能相比,与PD/AL2O3-CEO2-ZRO2三向催化剂(TWC)相比,分析了在YFEO3上支持的火焰2 wt%PD的老化特性。在瘦条件下的热处理(空气,900°C)导致TWC的甲烷氧化活性略有下降。在明显的对比中,YFEO3支持的PD催化剂在这种治疗后表现出活动的增加。在化学计量条件下进行处理时,活动的增强甚至更高(空气燃料等效比,x = 1,900°C)。为了解释这一观察结果,进行了新鲜和老化催化剂的深入表征(BET,STEM,OSCC,XAS和CO化学吸附)。热和化学计量的老化都会引起支撑颗粒的严重烧结以及从六角形到正交YFEO3的相变。尽管没有混合的PD-YFEO3相,但在λ= 1大气下,PD颗粒的生长似乎受到限制。与形成大型PDO颗粒的热老化催化剂相反,在化学计量衰老后,存在明确定义的10-20 nm的金属PD纳米颗粒以及较高的甲烷氧化活性。尽管很容易得出结论,在给定条件下,金属PD在甲烷氧化中具有活性,但在调制激发高能激发中观察到了可逆的和周期性的部分氧化,可转移和周期性的部分氧化。操作过程中经历的条件。这些结果表明,大型PD颗粒表现出改善的甲烷氧化活性,但同样证实,化学计量条件下的活性是由散装-PD/Surface-PDO对​​决定的微妙平衡的结果。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号