A DFT study on N2O oxidation and methanol synthesis over Bi4O6: single-site catalytic model of α-Bi2Mo3O12

被引:0
|
作者
Haopramong, Nuengruethai [1 ]
Tontapha, Sarawut [2 ]
Ruangpornvisuti, Vithaya [3 ]
Sang-aroon, Wichien [1 ]
机构
[1] Rajamangala Univ Technol Isan, Fac Engn, Dept Chem, Khon Kaen Campus, Khon Kaen 40000, Thailand
[2] Khon Kaen Univ, Fac Sci, Integrated Nanotechnol Res Ctr, Dept Phys, Khon Kaen 40001, Thailand
[3] Chulalongkorn Univ, Fac Sci, Dept Chem, Supramol Chem Res Unit, Bangkok 10320, Thailand
关键词
Nitrous oxide; Green catalytic concept; Methanol synthesis; Bismuth oxide; Single-site catalytic model; NITROUS-OXIDE DECOMPOSITION; DENSITY-FUNCTIONAL THEORY; CLUSTER CATIONS; GAS-PHASE; NITRIC-OXIDE; AB-INITIO; OXYGEN; MECHANISM; ZEOLITES; CU-ZSM-5;
D O I
10.1007/s00894-022-05349-8
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Catalytic conversion of methane to methanol is one of the most promising processes for effective natural gas resource utilization. In this work, Bi4O6-catalyzed oxidation of methane to methanol with N2O as an oxidizing reactant has been investigated by DFT calculation. For the overall reaction mechanism of three N2O molecules on Bi4O6 catalyst, two catalytic cycles were proposed. Cycle 1 involved the consecutive decomposition of the first two N2O molecules. Cycle 2 corresponded to the decomposition of the third N2O molecule. The activation barriers of the first and second N2O decomposition were computed to be 27.6 and 35.0 kcal/mol, respectively. The third N2O decomposition in cycle 2 required 36.1 kcal/mol activation barriers. Thus, cycle 1 was the main catalytic cycle for N2O as the cycle required lower in barriers than those of the other. Oxidation of methane to methanol on Bi4O7 and Bi4O8 catalysts was supposed to be a two-step mechanism consisting of H3C-H bond breaking and CH3-OH formation. The activation energies of the two steps were 32.7, 41.1, and 21.6, 17.2 kcal/mol for Bi4O7 and Bi4O8, respectively. Thus, methane oxidation over Bi4O8 was found to be more energetically favorable than those of Bi4O7, in which C-H bond breaking is the RDS. The present catalyst could be a promising material for the oxidation of methane to methanol. In summary, the single-site catalytic model study would be beneficial for guiding and searching for potential catalysts in heterogeneously catalyzed N2O decomposition and methanol synthesis as green as possible. However, theoretical investigation of this kind of catalyst's extended model system must be taken into account.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Facile synthesis of Bi12O17Br2 and Bi4O5Br2 nanosheets: In situ DRIFTS investigation of photocatalytic NO oxidation conversion pathway
    Zhang, Wendong
    Liu, Xiaoli
    Dong, Xing'an
    Dong, Fan
    Zhang, Yuxin
    CHINESE JOURNAL OF CATALYSIS, 2017, 38 (12) : 2030 - 2038
  • [22] Catalytic decomposition of propellant N2O Over Ir/Al2O3 catalyst
    Lin, Jian
    Li, Lin
    Pan, Xiaoli
    Wang, Xiaodong
    Cong, Yu
    Zhang, Tao
    Zhu, Shaomin
    AICHE JOURNAL, 2016, 62 (11) : 3973 - 3981
  • [23] Facile construction of Bi2Mo3O12@Bi2O2CO3 heterojunctions for enhanced photocatalytic efficiency toward NO removal and study of the conversion process
    Huo, Wangchen
    Cao, Tong
    Xu, Weina
    Guo, Ziyang
    Liu, Xiaoying
    Yao, Hong-Chang
    Zhang, Yuxin
    Dong, Fan
    CHINESE JOURNAL OF CATALYSIS, 2020, 41 (02) : 268 - 275
  • [24] Y2O3 promoted Co3O4 catalyst for catalytic decomposition of N2O
    Wang, Yongzhao
    Zheng, Ke
    Hu, Xiaobo
    Zhou, Wei
    Wei, Xuhui
    Zhao, Yongxiang
    MOLECULAR CATALYSIS, 2019, 470 : 104 - 111
  • [25] Catalytic decomposition of N2O on iron-embedded C2N monolayer: A DFT study
    Liu, Xinmiao
    Sheng, Li
    MATERIALS TODAY COMMUNICATIONS, 2021, 28
  • [26] The effects of Bi2O3 on the selective catalytic reduction of NO by propylene over Co3O4 nanoplates
    Yu, Dezhong
    Zhong, Xin
    Liu, Dong
    Liang, Ying
    RSC ADVANCES, 2019, 9 (55) : 32232 - 32239
  • [27] Active Oxygen Vacancy Site for Methanol Synthesis from CO2 Hydrogenation on In2O3(110): A DFT Study
    Ye, Jingyun
    Liu, Changjun
    Mei, Donghai
    Ge, Qingfeng
    ACS CATALYSIS, 2013, 3 (06): : 1296 - 1306
  • [28] Promotional Effect of Ag on the Catalytic Decomposition of N2O in the Presence of O2 over the Al2O3-Supported Rh Catalyst
    Jing, Yuan
    He, Chenxi
    Zhang, Ningqiang
    Murano, Yu
    Toyoshima, Ryo
    Kondoh, Hiroshi
    Kageyama, Yuuta
    Inomata, Hironori
    Toyao, Takashi
    Shimizu, Ken-ichi
    ACS CATALYSIS, 2023, 13 (19) : 12983 - 12993
  • [29] Catalytic Decomposition of N2O over Cu-Zn/ZnAl2O4 Catalysts
    Zheng, Xiaoying
    Zhang, Runhu
    Bai, Fang
    Hua, Chao
    CATALYSTS, 2017, 7 (05):
  • [30] DFT Study on Mechanisms of the N2O Direct Catalytic Decomposition over Cu-ZSM-5: The Detailed Investigation on NO Formation Mechanism
    Gao, Congru
    Li, Jianwei
    Zhang, Jie
    Sun, Xiuliang
    CATALYSTS, 2020, 10 (06)