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确定基于 Cu-Chabazite 的氨选择性催化还原系统中 NH3 的存储、可用性和反应性。

Determining the storage, availability and reactivity of NH3 within Cu-Chabazite-based Ammonia Selective Catalytic Reduction systems.

机构信息

Materials innovation institute (M2i), Mekelweg 2, 2628 CD Delft, The Netherlands.

出版信息

Phys Chem Chem Phys. 2014 Jan 28;16(4):1639-50. doi: 10.1039/c3cp54132k.

Abstract

Three different types of NH3 species can be simultaneously present on Cu(2+)-exchanged CHA-type zeolites, commonly used in Ammonia Selective Catalytic Reduction (NH3-SCR) systems. These include ammonium ions (NH4(+)), formed on the Brønsted acid sites, Cu(NH3)4 complexes, resulting from NH3 coordination with the Cu(2+) Lewis sites, and NH3 adsorbed on extra-framework Al (EFAl) species, in contrast to the only two reacting NH3 species recently reported on Cu-SSZ-13 zeolite. The NH4(+) ions react very slowly in comparison to NH3 coordinated to Cu(2+) ions and are likely to contribute little to the standard NH3-SCR process, with the Brønsted groups acting primarily as NH3 storage sites. The availability/reactivity of NH4(+) ions can be however, notably improved by submitting the zeolite to repeated exchanges with Cu(2+), accompanied by a remarkable enhancement in the low temperature activity. Moreover, the presence of EFAl species could also have a positive influence on the reaction rate of the available NH4(+) ions. These results have important implications for NH3 storage and availability in Cu-Chabazite-based NH3-SCR systems.

摘要

在用于氨选择性催化还原(NH3-SCR)系统的铜(Ⅱ)交换 CHA 型沸石上,可以同时存在三种不同类型的 NH3 物种。这些物种包括在 Brønsted 酸位上形成的铵离子(NH4(+))、由 NH3 与 Cu(2+) 路易斯位配位形成的Cu(NH3)4配合物,以及吸附在骨架外 Al(EFAl)物种上的 NH3,与最近报道的在 Cu-SSZ-13 沸石上仅有的两种反应性 NH3 物种形成对比。与配位到 Cu(2+) 离子的 NH3 相比,NH4(+) 离子的反应速度非常慢,并且可能对标准的 NH3-SCR 过程贡献不大,Brønsted 基团主要作为 NH3 的储存位点。然而,通过使沸石与 Cu(2+) 反复交换,并伴随着低温活性的显著提高,NH4(+) 离子的可用性/反应性可以显著改善。此外,EFAl 物种的存在也可能对可用的 NH4(+) 离子的反应速率产生积极影响。这些结果对基于铜 CHABAZITE 的 NH3-SCR 系统中的 NH3 储存和可用性具有重要意义。

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