自然杂志 ›› 2026, Vol. 48 ›› Issue (4): 290-300.doi: 10.3969/j.issn.0253-9608.2026.04.005

• 专题综述 • 上一篇    下一篇

金属氧化物基移动源被动式氮氧化物吸附剂的现状与展望

梅懿,高紫怡,陈阿玲,张登松   

  1. 上海大学 碳中和创新研究中心,上海 200444
  • 收稿日期:2026-06-18 出版日期:2026-08-25 发布日期:2026-08-14

Current status and future perspectives of metal oxide-based passive NOx adsorbers for mobile sources

MEI Yi, GAO Ziyi, CHEN Aling, ZHANG Dengsong   

  1. Innovation Institute of Carbon Neutrality, Shanghai University, Shanghai 200444, China
  • Received:2026-06-18 Online:2026-08-25 Published:2026-08-14

摘要: 氮氧化物(NOx)排放是移动源污染的关键来源,在柴油车冷启动阶段尤为突出,严重威胁环境与人体健康。被动式NOx吸附剂(passive NOx adsorber, PNA)是当前实现柴油车NOx低排放的有效措施。本文系统总结了金属氧化物基PNA材料的研究现状,重点讨论了二氧化铈基金属氧化物低温吸附NOx的构效关系与性能改进策略,同时涵盖钴基、锰基及复合金属氧化物等其他体系的低温NOx吸附性能与机制研究。文中详细阐述了NOx以亚硝酸盐/硝酸盐形式存储分解的吸附-氧化-脱附机理和以金属离子络合物形式存储释放的吸附-络合-脱附机理。此外,还讨论了尾气组分(水、一氧化碳、碳氢化合物)、水热老化以及硫磷化学中毒对NOx吸附-脱附行为的影响。最后提出了金属氧化物基PNA材料未来研究的主要挑战和发展方向。

关键词: 移动源, 冷启动, 被动氮氧化物吸附剂, 金属氧化物

Abstract: Nitrogen oxide (NOx) emissions are a critical contributor to mobile‑source pollution, which is particularly severe during the cold‑start phase of diesel vehicles, posing substantial threats to the environment and human health. Passive NOx adsorber (PNA) technology represents an effective strategy to achieve low‑NOx emissions from diesel vehicles. This review systematically summarizes the latest advances in the synthesis design and mechanistic investigation of metal‑based PNA materials. Particular emphasis is placed on the structure‑activity relationships and modification strategies of cerium‑based metal oxides, while other non‑noble metal systems including cobalt‑based, manganese‑based, and composite metal oxides are also covered. Two core mechanisms are elaborated in detail: the adsorption–oxidation–desorption mechanism wherein NOx is stored and decomposed in the forms of nitrites/nitrates, and the adsorption–complexation–desorption mechanism involving NOx storage and release via metal‑ion complex formation. Furthermore, the effects of other components in exhaust (H2O, CO, and hydrocarbons), hydrothermal aging, and chemical poisoning induced by sulfur and phosphorus on the NOx adsorption–desorption behaviors of PNA materials are discussed. Finally, the major challenges and future research directions for metal‑based PNA materials are proposed.