†School of Chemistry and Chemical Engineering, University of Jinan, No. 336, West Road of Nan Xinzhuang, Jinan 250022, P. R. China.
‡Materials and Chemical Engineering Group, School of Engineering, University of Aberdeen, AB24 3UE Scotland, United Kingdom.
Environ Sci Technol. 2015 Jul 7;49(13):7989-95. doi: 10.1021/acs.est.5b01361. Epub 2015 Jun 17.
The extremely severe and persistent haze problems in some parts of the world including China have prompted the implementation of increasingly stringent tailpipe regulations. This places increasingly higher performance requirements for three-way catalysts, and in particular a widening of the air/fuel (λ) ratio operating window to facilitate operation of the on-board diagnostic system. A new pathway is presented here by tuning the nanostructure of TWCs to improve their λ activities and hydrothermal stability. High-temperature reduction and a mild-temperature reoxidation treatment for alumina-modified ceria-zirconia brought about the formation of a cubic, fully oxidized, pyrochlore-like superstructure, Ce2Zr2O8. The combination of Pd and the Ce2Zr2O8 superstructure greatly improved the λ window for Pd-only three-way catalysts. X-ray powder diffraction (XRD), temperature-programmed reduction with H2 (H2-TPR) and high-resolution transmission electron microscopy (HRTEM) characterization confirmed the interaction between Pd and the Ce2Zr2O8 superstructure, which modifies the dynamic oxygen storage capacity in comparison to the conventional Pd-Ce(Zr)O2 interaction, due to higher low-temperature reducibility for the Ce2Zr2O8 superstructure than for Ce(Zr)O2. Furthermore, the retention of the Ce2Zr2O8 superstructure derived from the interaction with Pd results in superior λ and light-off performances after hydrothermal aging treatment at 1000 °C for 12 h in air containing 10% H2O.
世界上一些地区(包括中国)出现了极其严重且持久的雾霾问题,这促使实施越来越严格的尾气排放法规。这对三效催化剂提出了越来越高的性能要求,特别是需要扩大空燃比(λ)工作窗口,以方便车载诊断系统的运行。本文提出了一种新方法,通过调整三效催化剂的纳米结构来提高其 λ 活性和水热稳定性。氧化铝改性铈锆氧化物的高温还原和低温再氧化处理导致形成立方、完全氧化、钙钛矿型超结构 Ce2Zr2O8。钯与 Ce2Zr2O8 超结构的结合极大地改善了仅含钯的三效催化剂的 λ 窗口。X 射线粉末衍射(XRD)、氢气程序升温还原(H2-TPR)和高分辨率透射电子显微镜(HRTEM)表征证实了 Pd 与 Ce2Zr2O8 超结构之间的相互作用,与传统的 Pd-Ce(Zr)O2 相互作用相比,这改变了动态储氧能力,因为 Ce2Zr2O8 超结构的低温还原能力比 Ce(Zr)O2 高。此外,与 Pd 的相互作用产生的 Ce2Zr2O8 超结构的保留导致在 1000°C 下在含有 10%H2O 的空气中进行 12 小时水热老化处理后,λ 和起燃性能得到了改善。