Syngas Production from Electrochemical CO2 Reduction on Copper Oxide Electrodes in Aqueous Solution

被引:18
作者
Yao, Xi [1 ]
Guo, Yafei [1 ]
Liu, Bingqian [1 ]
Wang, Puyao [1 ]
Sun, Jian [1 ]
Li, Weiling [1 ]
Zhao, Chuanwen [1 ]
机构
[1] Nanjing Normal Univ, Sch Energy & Mech Engn, Engn Lab Energy Syst Proc Convers & Emiss Control, 2 Xuelin Rd, Nanjing 210023, Peoples R China
来源
CHEMELECTROCHEM | 2021年 / 8卷 / 03期
基金
中国国家自然科学基金;
关键词
syngas; electrochemical CO2 reduction; CuO electrodes; calcination temperature; structure-property-activity relationships; TEMPLATE-FREE SYNTHESIS; CARBON-DIOXIDE; ELECTROCATALYST; SELECTIVITY; PRECURSOR; OXIDATION; CUO;
D O I
10.1002/celc.202001504
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Electrochemical CO2 reduction to value-added chemicals and fuels using renewable energy represents a promising strategy for reducing CO2 emissions and achieving effective energy storage. In this work, nano-sized CuO catalysts were prepared by using the homogeneous precipitation method for electrochemical CO2 reduction to CO. The CO2 reduction studies combined with the characterization results show that structure-activity relationships of the CuO catalysts depend on the calcination temperature. The as-synthesized CuO catalysts calcined at different temperatures are capable of reducing CO2 to generate syngas with tunable CO/H-2 ratios of 1 : 2 to 2 : 1. The desired CuO-400 catalyst exhibits good morphology, small particle size, and enriched oxygen-vacancy defects and, therefore, shows good performance for electrochemical CO2 reduction to CO. Under the given potential of -0.93 V vs. RHE, CuO-400 exhibits good reduction activity and selectivity with a great electrochemically active surface area normalized CO partial current density of 1.44 mA/cm(2) and a high CO faradaic efficiency of 48.2 %. The deactivation of CuO-400 in the long-term test is associated with the increase in particle size, the reduction of CuO to Cu2O and metallic Cu, and the coverage of surface active sites by the formed carbonate species. Our findings indicate that CuO catalysts with tunable physicochemical properties are promising candidates for electrochemical CO2 reduction to produce syngas.
引用
收藏
页码:592 / 602
页数:11
相关论文
共 55 条
  • [1] Carbon Capture and Utilization Update
    Al-Mamoori, Ahmed
    Krishnamurthy, Anirudh
    Rownaghi, Ali A.
    Rezaei, Fateme
    [J]. ENERGY TECHNOLOGY, 2017, 5 (06) : 834 - 849
  • [2] [Anonymous], 2018, ANGEW CHEM
  • [3] Copper and Copper-Based Bimetallic Catalysts for Carbon Dioxide Electroreduction
    Birhanu, Mulatu Kassie
    Tsai, Meng-Che
    Kahsay, Amaha Woldu
    Chen, Chun-Tse
    Zeleke, Tamene Simachew
    Ibrahim, Kassa Belay
    Huang, Chen-Jui
    Su, Wei-Nien
    Hwang, Bing-Joe
    [J]. ADVANCED MATERIALS INTERFACES, 2018, 5 (24):
  • [4] Tailoring the Selectivity of Bimetallic Copper-Palladium Nanoalloys for Electrocatalytic Reduction of CO2 to CO
    Chen, Dong
    Yao, Qaofeng
    Cui, Penglei
    Liu, Hui
    Xie, Jianping
    Yang, Jun
    [J]. ACS APPLIED ENERGY MATERIALS, 2018, 1 (02): : 883 - 890
  • [5] Effect of calcination temperature on structural properties and catalytic soot combustion activity of MnOx/wire-mesh monoliths
    Chen, Li
    Liu, Geng
    Feng, Nengjie
    Yu, Jiahuan
    Meng, Jie
    Fang, Fan
    Zhao, Peng
    Wang, Lei
    Wan, Hui
    Guan, Guofeng
    [J]. APPLIED SURFACE SCIENCE, 2019, 467 : 1088 - 1103
  • [6] Standards and Protocols for Data Acquisition and Reporting for Studies of the Electrochemical Reduction of Carbon Dioxide
    Clark, Ezra L.
    Resasco, Joaquin
    Landers, Alan
    Lin, John
    Chung, Linh-Thao
    Walton, Amber
    Hahn, Christopher
    Jaramillo, Thomas F.
    Bell, Alexis T.
    [J]. ACS CATALYSIS, 2018, 8 (07): : 6560 - 6570
  • [7] Selective synthesis of clinoatacamite Cu2(OH)3Cl and tenorite CuO nanoparticles by pH control
    Engelbrekt, Christian
    Malcho, Phillip
    Andersen, Jonas
    Zhang, Lijuan
    Stahl, Kenny
    Li, Bin
    Hu, Jun
    Zhang, Jingdong
    [J]. JOURNAL OF NANOPARTICLE RESEARCH, 2014, 16 (08)
  • [8] Electrochemical Reduction of CO2 into C1 and C2 Hydrocarbons Using Dendritic Cu and Cu2O Electrodes
    Feroze, Muhammad Tajmeel
    Sami, Syed Kamran
    Doonyapisut, Dulyawat
    Kim, Byeongkyu
    Chung, Chan-Hwa
    [J]. CHEMELECTROCHEM, 2020, 7 (03): : 730 - 736
  • [9] Electrochemical conversion of carbon dioxide into renewable fuel chemicals - The role of nanomaterials and the commercialization
    Ganesh, Ibram
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 59 : 1269 - 1297
  • [10] GAMMA-CU2(OH)3CL AS PRECURSOR IN THE PREPARATION OF COPPER (I) AND (II) OXIDES AND COPPER-POWDER
    GARCIAMARTINEZ, O
    MILLAN, P
    ROJAS, RM
    [J]. JOURNAL OF MATERIALS SCIENCE, 1986, 21 (12) : 4411 - 4418