Institute of Chemical Technology, Universität Leipzig, Linnéstr. 3, 04103 Leipzig, Germany.
Molecules. 2021 Oct 26;26(21):6461. doi: 10.3390/molecules26216461.
A recent development for selective ammonia oxidation into nitrogen and water vapor (NH-SCO) over noble metal-based catalysts is covered in the mini-review. As ammonia (NH) can harm human health and the environment, it led to stringent regulations by environmental agencies around the world. With the enforcement of the Euro VI emission standards, in which a limitation for NH emissions is proposed, NH emissions are becoming more and more of a concern. Noble metal-based catalysts (i.e., in the metallic form, noble metals supported on metal oxides or ion-exchanged zeolites, etc.) were rapidly found to possess high catalytic activity for NH oxidation at low temperatures. Thus, a comprehensive discussion of property-activity correlations of the noble-based catalysts, including Pt-, Pd-, Ag- and Au-, Ru-based catalysts is given. Furthermore, due to the relatively narrow operating temperature window of full NH conversion, high selectivity to NO and NO as well as high costs of noble metal-based catalysts, recent developments are aimed at combining the advantages of noble metals and transition metals. Thus, also a brief overview is provided about the design of the bifunctional catalysts (i.e., as dual-layer catalysts, mixed form (mechanical mixture), hybrid catalysts having dual-layer and mixed catalysts, core-shell structure, etc.). Finally, the general conclusions together with a discussion of promising research directions are provided.
本综述涵盖了近年来在贵金属基催化剂上选择性氨氧化为氮气和水蒸气(NH-SCO)的研究进展。由于氨(NH)会危害人体健康和环境,因此世界各地的环境机构都制定了严格的法规。随着欧洲 VI 号排放标准的实施,该标准提出了对 NH 排放的限制,NH 排放越来越受到关注。人们很快发现,贵金属基催化剂(例如,金属形式的、负载在金属氧化物上的贵金属或离子交换沸石等)在低温下具有很高的 NH 氧化催化活性。因此,对包括 Pt、Pd、Ag 和 Au 基催化剂、Ru 基催化剂在内的贵金属基催化剂的性能-活性相关性进行了全面讨论。此外,由于完全转化 NH 的操作温度窗口较窄、对 NO 和 NO 的高选择性以及贵金属基催化剂的高成本,最近的发展旨在结合贵金属和过渡金属的优势。因此,还简要概述了双功能催化剂的设计(即双层催化剂、混合形式(机械混合物)、具有双层和混合催化剂的混合催化剂、核壳结构等)。最后,提供了一般性结论,并讨论了有前途的研究方向。