DFT Analysis of the Reaction Mechanism for NH3-SCR of NOx over Mn/γ-Al2O3 Catalyst

被引:50
|
作者
Li, Xin [1 ]
Li, Quan [1 ]
Zhong, Liu [1 ]
Song, Zijian [1 ]
Yu, Shenghui [1 ]
Zhang, Cheng [1 ]
Fang, Qingyan [1 ]
Chen, Gang [1 ]
机构
[1] Huazhong Univ Sci & Technol, State Key Lab Coal Combust, Sch Energy & Power Engn, Wuhan 430074, Hubei, Peoples R China
来源
JOURNAL OF PHYSICAL CHEMISTRY C | 2019年 / 123卷 / 41期
关键词
REDUCTION; NH3; ADSORPTION; OXIDATION; AMMONIA; SURFACE; OXIDE; PERFORMANCE; ANATASE; DRIFT;
D O I
10.1021/acs.jpcc.9b06499
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The SCR reaction mechanism on the Mn/gamma-Al2O3 catalyst was studied using density functional theory. The intermediates, energy barriers, and rate-determining steps of N-2, NO2, and N2O formation were calculated. It was found that NH3 could be adsorbed on the Lewis acid sites and participated in the SCR reaction in the form of coordinated NH3. In addition, NH3 could also be adsorbed on the Bronsted acid sites and participated in the SCR reaction in the form of NH4+. The rate-determining steps of these two pathways were H2O* desorption and NH4NO2* decomposition. The energy barriers were 111.85 and 455.89 kJ/mol, respectively, indicating that NH3 mainly participated in the N-2 formation reaction in the form of coordinated NH3. The active oxygen formed by the decomposition of adsorbed O-2 could oxidize gaseous NO into NO2. NO could also be oxidized by the lattice oxygen while the energy barrier via this pathway was 10.30 kJ/mol higher, indicating that the active oxygen was more reactive. The energy barriers of N2O formation via three pathways, NO decomposition, deep dehydrogenation of NH3, and two-step dehydrogenation of NH2NO, were 471.62, 281.25, and 341.55 kJ/mol, respectively, impling that N2O formation was mainly caused by the deep dehydrogenation of NH3.
引用
收藏
页码:25185 / 25196
页数:12
相关论文
共 50 条
  • [31] Optimisation of Ag loading and alumina characteristics to give sulphur-tolerant Ag/Al2O3 catalyst for H2-assisted NH3-SCR of NOx
    Fogel, Sebastian
    Doronkin, Dmitry E.
    Gabrielsson, Par
    Dahl, Soren
    APPLIED CATALYSIS B-ENVIRONMENTAL, 2012, 125 : 457 - 464
  • [32] Water promotion mechanism on the NH3-SCR over Fe-BEA catalyst
    Shi, Jin
    Zhang, Yi
    Zhang, Zihao
    Fan, Zeyun
    Chen, Mingxia
    Zhang, Zhixiang
    Shangguan, Wenfeng
    CATALYSIS COMMUNICATIONS, 2018, 115 : 59 - 63
  • [33] New "Enhanced NH3-SCR" Reaction for NOx Emission Control
    Forzatti, Pio
    Nova, Isabella
    Tronconi, Enrico
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2010, 49 (21) : 10386 - 10391
  • [34] Insight into the reaction mechanism of NH3-SCR and chlorobenzene oxidation over Mn-based spinel catalysts
    Zhao, Liming
    Yang, Yingju
    Liu, Jing
    JOURNAL OF HAZARDOUS MATERIALS, 2025, 492
  • [35] Revealing the Ca resistance enhancement mechanism for the NH3-SCR reaction over VTi catalyst by CuO modification
    Zheng, Yang
    Guo, Yangyang
    Shan, Wenpo
    Lian, Zhihua
    Zhu, Tingyu
    APPLIED CATALYSIS A-GENERAL, 2022, 637
  • [36] The promotional role of Nd on Mn/TiO2 catalyst for the low-temperature NH3-SCR of NOx
    Huang, Jun
    Huang, He
    Jiang, Hongtao
    Liu, Licheng
    CATALYSIS TODAY, 2019, 332 : 49 - 58
  • [37] γ-Al2O3酸性修饰稀土尾矿NH3-SCR脱硝性能
    付金艳
    王振峰
    白心蕊
    崔梦壳
    武文斐
    中国环境科学, 2020, 40 (09) : 3741 - 3747
  • [38] Effect of Sulfates on the Reaction Pathway Over CeO2-Based Catalyst for NH3-SCR
    Song, Zhongxian
    Guo, Ruihua
    Zhang, Mengru
    Liu, Hongpan
    Mao, Yanli
    Huang, Zhenzhen
    Gu, Deming
    Kang, Haiyan
    Zhang, Jinhui
    Zhang, Xuejun
    APPLIED ORGANOMETALLIC CHEMISTRY, 2025, 39 (02)
  • [39] Mechanistic investigation of ethanol SCR of NOx over Ag/Al2O3
    Johnson, William L., II
    Fisher, Galen B.
    Toops, Todd J.
    CATALYSIS TODAY, 2012, 184 (01) : 166 - 177
  • [40] Activity Improvement of Mn/Al2O3 for NH3-SCR Reaction via the Rare-Earth (Ce, La, Nd and Y) Oxides Modification
    Teng, Yu
    Guo, Xiaoming
    Xue, Hongyan
    Meng, Tao
    Han, Lupeng
    CATALYSIS LETTERS, 2024, 154 (07) : 3645 - 3653