CO2 Hydrogenation to Methanol over Ce and Zr Containing UiO-66 and Cu/UiO-66

被引:37
|
作者
Stawowy, Michalina [1 ]
Ciesielski, Radoslaw [2 ]
Maniecki, Tomasz [2 ]
Matus, Krzysztof [3 ]
Luzny, Rafal [1 ]
Trawczynski, Janusz [1 ]
Silvestre-Albero, Joaquin [4 ]
Lamacz, Agata [1 ]
机构
[1] Wroclaw Univ Sci & Technol, Dept Chem & Technol Fuels, Gdanska 7-9, PL-50344 Wroclaw, Poland
[2] Lodz Univ Technol, Inst Gen & Ecol Chem, Zeromskiego 116, PL-90924 Lodz, Poland
[3] Silesian Tech Univ, Inst Engn Mat & Biomat, Konarskiego 18a, PL-44100 Gliwice, Poland
[4] Univ Alicante, Dept Quim Inorgan IUMA, Lab Mat Avanzados, Ctra San Vicente Alicante S-N, E-03690 San Vicente Del Raspeig, Spain
关键词
UiO-66; cerium; copper; CO2; hydrogenation; methanol; METAL-ORGANIC FRAMEWORKS; CARBON-DIOXIDE; CU/ZNO/ZRO2; CATALYSTS; COPPER-CERIA; CU; NANOPARTICLES; TEMPERATURE; SELECTIVITY; ADSORPTION; STABILITY;
D O I
10.3390/catal10010039
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
Direct hydrogenation of CO2 to methanol is an interesting method to recycle CO2 emitted e.g., during combustion of fossil fuels. However, it is a challenging process because both the selectivity to methanol and its production are low. The metal-organic frameworks are relatively new class of materials with a potential to be used as catalysts or catalysts supports, also in the reaction of MeOH production. Among many interesting structures, the UiO-66 draws significant attention owing to its chemical and thermal stability, developed surface area, and the possibility of tuning its properties e.g., by exchanging the zirconium in the nodes to other metal cations. In this work we discuss-for the first time-the performance of Cu supported on UiO-66(Ce/Zr) in CO2 hydrogenation to MeOH. We show the impact of the composition of UiO-66-based catalysts, and the character of Cu-Zr and Cu-Ce interactions on MeOH production and MeOH selectivity during test carried out for 25 h at T = 200 degrees C and p = 1.8 MPa. Significant increase of selectivity to MeOH was noticed after exchanging half of Zr4+ cations with Ce4+; however, no change in MeOH production occurred. It was found that the Cu-Ce coexistence in the UiO-66-based catalytic system reduced the selectivity to MeOH when compared to Cu/UiO-66(Zr), which was ascribed to lower concentration of Cu-0 active sites in Cu/UiO-66(Ce/Zr), and this was caused by oxygen spill-over between Cu-0 and Ce4+, and thus, the oxidation of the former. The impact of reaction conditions on the structure stability of tested catalyst was also determined.
引用
收藏
页数:17
相关论文
共 50 条
  • [21] Direct synthesis of dimethyl carbonate from CO2 and methanol over trifluoroacetic acid modulated UiO-66
    Xuan, Keng
    Pu, Yanfeng
    Li, Feng
    Li, Aixue
    Luo, Jing
    Li, Lei
    Wang, Feng
    Zhao, Ning
    Xiao, Fukui
    [J]. JOURNAL OF CO2 UTILIZATION, 2018, 27 : 272 - 282
  • [22] Computational design of a metal-based frustrated Lewis pair on defective UiO-66 for CO2 hydrogenation to methanol
    Yang, Kuiwei
    Jiang, Jianwen
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2020, 8 (43) : 22802 - 22815
  • [23] Concentration-Dependent Binding of CO2 and CD4 in UiO-66(Zr)
    Chevreau, Hubert
    Liang, Weibin
    Kearley, Gordon J.
    Duyker, Samuel G.
    D'Alessandro, Deanna M.
    Peterson, Vanessa K.
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2015, 119 (13): : 6980 - 6987
  • [24] Polyacids as Modulators for the Synthesis of UiO-66
    Bentz, Kyle C.
    Ayala, Sergio, Jr.
    Kalaj, Mark
    Cohen, Seth M.
    [J]. AUSTRALIAN JOURNAL OF CHEMISTRY, 2019, 72 (10) : 848 - 851
  • [25] Modeling of Diffusion of Acetone in UiO-66
    Wardzala, Jacob J.
    Ruffley, Jonathan P.
    Goodenough, Isabella
    Schmidt, Allie M.
    Shukla, Priyanka B.
    Wei, Xin
    Bagusetty, Abhishek
    De Souza, Mattheus
    Das, Prasenjit
    Thompson, Dorian J.
    Karwacki, Christopher J.
    Wilmer, Christopher E.
    Borguet, Eric
    Rosi, Nathaniel L.
    Johnson, J. Karl
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2020, 124 (52): : 28469 - 28478
  • [26] Aqueous phase hydrogenation of furfural to tetrahydrofurfuryl alcohol over Pd/UiO-66
    Wang, Chunhua
    Wang, Anjie
    Yu, Zhiquan
    Wang, Yao
    Sun, Zhichao
    Kogan, Victor M.
    Liu, Ying-Ya
    [J]. CATALYSIS COMMUNICATIONS, 2021, 148
  • [27] Directly synthesis of dimethyl carbonate from CO2 and methanol over UiO-66 @CeO2 Catalyst
    Xu, Wei
    Xu, Zhihao
    Yao, Wenxuan
    Hu, Lihua
    Ding, Keqiang
    Wu, Gongde
    Xiao, Guomin
    Gao, Lijing
    [J]. APPLIED CATALYSIS A-GENERAL, 2023, 662
  • [28] A route to drastic increase of CO2 uptake in Zr metal organic framework UiO-66
    Lau, Cher Hon
    Babarao, Ravichandar
    Hill, Matthew R.
    [J]. CHEMICAL COMMUNICATIONS, 2013, 49 (35) : 3634 - 3636
  • [29] Synthesis and Stability of Tagged UiO-66 Zr-MOFs
    Kandiah, Mathivathani
    Nilsen, Merete Hellner
    Usseglio, Sandro
    Jakobsen, Soren
    Olsbye, Unni
    Tilset, Mats
    Larabi, Cherif
    Quadrelli, Elsje Alessandra
    Bonino, Francesca
    Lillerud, Karl Petter
    [J]. CHEMISTRY OF MATERIALS, 2010, 22 (24) : 6632 - 6640
  • [30] Geometry and energetics of CO adsorption on hydroxylated UiO-66
    Driscoll, Darren M.
    Troya, Diego
    Usov, Pavel M.
    Maynes, Andrew J.
    Morris, Amanda J.
    Morris, John R.
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2019, 21 (09) : 5078 - 5085