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了解NH配位活性位点的性质以及使用Cu-SAPO-34催化剂进行NH-SCR的完整反应方案。

Understanding the nature of NH-coordinated active sites and the complete reaction schemes for NH-SCR using Cu-SAPO-34 catalysts.

作者信息

Yang Guangpeng, Ran Jingyu, Du Xuesen, Wang Xiangmin, Ran Zhilin, Chen Yanrong, Zhang Li, Crittenden John

机构信息

Key Laboratory of Low-grade Energy Utilization Technologies and Systems, School of Energy and Power Engineering, Chongqing University, Chongqing, 400044, China.

School of Transportation and Environment, Shenzhen Institute of Information Technology, Shenzhen, 518172, China.

出版信息

Phys Chem Chem Phys. 2021 Mar 4;23(8):4700-4710. doi: 10.1039/d0cp06285e.

Abstract

Cu-SAPO-34 zeolite catalysts show excellent NH3-SCR performance at low temperature, which is due to the catalytic capacity of copper species. Isolated CuII ions and CuIIOH are active sites, but their nature and role are not fully understood. This paper reports the DFT calculations in combination with ab initio thermodynamics to investigate NH3 and H2O coordination to copper species under typical NH3-SCR reaction conditions. In the reduction part of the NH3-SCR reaction, NH2NO and NH4NO2 intermediates will form on CuII-2NH3/3NH3 and CuIIOH-2NH3 complexes, respectively. The Brønsted acid sites are crucial for the decomposition of these intermediates, rather than copper species. Furthermore, the decomposition of NH2NO is more energetically favorable than NH4NO2 which are formed on the Brønsted acid sites. In the re-oxidation part of the NH3-SCR reaction, O2 dissociation and NO2 formation occur on CuI-2NH3 complexes in the presence of NO, and the regeneration of CuIIOH-2NH3 requires the participation of H2O. The proposed complete mechanisms highlight the importance of ligand coordinated copper species for intermediate formation and O2 activation in NH3-SCR.

摘要

铜-磷酸硅铝分子筛(Cu-SAPO-34)催化剂在低温下表现出优异的氨选择性催化还原(NH3-SCR)性能,这归因于铜物种的催化能力。孤立的CuII离子和CuIIOH是活性位点,但其本质和作用尚未完全明确。本文结合密度泛函理论(DFT)计算和从头算热力学,研究了在典型NH3-SCR反应条件下NH3和H2O与铜物种的配位情况。在NH3-SCR反应的还原部分,NH2NO和NH4NO2中间体将分别在CuII-2NH3/3NH3和CuIIOH-2NH3络合物上形成。布朗斯特酸位点对于这些中间体的分解至关重要,而非铜物种。此外,NH2NO的分解在能量上比在布朗斯特酸位点上形成的NH4NO2更有利。在NH3-SCR反应的再氧化部分,在NO存在下,O2解离和NO2形成发生在CuI-2NH3络合物上,而CuIIOH-2NH3的再生需要H2O的参与。所提出的完整机理突出了配体配位的铜物种在NH3-SCR中中间体形成和O2活化方面的重要性。

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