铂在现代三元催化剂中的挑战与机遇

IF 1.7 4区 化学 Q4 CHEMISTRY, PHYSICAL Johnson Matthey Technology Review Pub Date : 2023-01-01 DOI:10.1595/205651323x16759335257118
M. Vlachou, H. R. Marchbank, E. Brooke, A. Kolpin
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引用次数: 2

摘要

汽油车通常依赖钯和铑的组合超过25年,以促进所需的CO, hc和NOx的氧化和还原反应。最近,钯相对于铂金的价格稳步上涨,推动了将铂金重新纳入twc的需求。然而,铂的基本性质,包括在典型汽油操作条件下的烧结敏感性和抑制性,提出了重大挑战。本文概述了这些挑战的起源,以及最大化铂对现代twc的贡献的选择策略。优化二氧化铈支撑是通过调整二氧化铈比来显著改善铂性能的一种途径。此外,将铂与次级PGM(例如铑)合金化,利用两种金属的互补特性,赋予稳定性和整体活性增强。这些路线不仅使PGM具有灵活性,而且为进一步提高TWC性能提供了机会。
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Challenges and Opportunities for Platinum in the Modern Three-Way Catalyst
Gasoline vehicles have generally relied upon a combination of palladium and rhodium for more than 25 years to facilitate the required oxidative and reductive reactions of CO, HCs, and NOx. Recently, steady increases in the price of palladium relative to platinum have fuelled demand to reincorporate platinum into TWCs. However, the fundamental properties of platinum, including susceptibility toward sintering and inhibition under typical gasoline operating conditions, present significant challenges. This article presents an overview of the origins for these challenges, as well as select strategies for maximizing platinum’s contribution to modern-day TWCs. Optimisation of ceria-zirconia supports is one route by which platinum’s performance can be significantly improved through tuning of the ceria:zirconia ratio. Additionally, alloying platinum with a secondary PGM, e.g. rhodium, leverages complimentary properties of both metals, imparting stability and overall activity enhancements. Such routes not only enable PGM flexibility, but also provide opportunities to further improve TWC performance.
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来源期刊
Johnson Matthey Technology Review
Johnson Matthey Technology Review CHEMISTRY, PHYSICAL-
CiteScore
4.30
自引率
4.30%
发文量
48
审稿时长
12 weeks
期刊介绍: Johnson Matthey Technology Review publishes articles, reviews and short reports on science enabling cleaner air, good health and efficient use of natural resources. Areas of application and fundamental science will be considered in the fields of:Advanced materials[...]Catalysis[...][...]Characterisation[...]Electrochemistry[...]Emissions control[...]Fine and speciality chemicals[...]Historical[...]Industrial processes[...]Materials and metallurgy[...]Modelling[...]PGM and specialist metallurgy[...]Pharmaceutical and medical science[...]Surface chemistry and coatings[...]Sustainable technologies.
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