Electrochemical transformation of biomass-derived oxygenates

被引:0
|
作者
Peng Zhou
Jie Zhang
机构
[1] Monash University,School of Chemistry
来源
Science China Chemistry | 2023年 / 66卷
关键词
biomass utilization; electrochemical hydrogenation; reductive amination; catalyst; spectroscopy; mechanism;
D O I
暂无
中图分类号
学科分类号
摘要
Replacing conventional fossil resources with renewable raw materials for chemical production and energy generation is crucial for achieving the carbon-neutral goal and alleviating the emerging energy crisis. Biomass has been considered as one of the most promising candidates for this purpose owing to its great natural abundance and inherent ability to fix CO2 in the form of multi-carbon compounds. Particularly, biomass conversion through an electrochemical route is intriguing because of its operability near ambient conditions, flexible scalability (suitable for distributed manufacturing and even domestic use) and green generation of oxidative or reductive equivalents instead of wasteful and possibly explosive or flammable reagents. Herein, recent progress in electrochemical transformation of biomass, including hydrogenation and amination, is reviewed with the emphasis on catalysts and strategies for enhancing catalytic efficiency. The advances in mechanistic understanding using in-situ spectroscopy are also briefly discussed. Finally, recommendations for the directions for future development are also provided.
引用
收藏
页码:1011 / 1031
页数:20
相关论文
共 50 条
  • [1] Electrochemical transformation of biomass-derived oxygenates
    Peng Zhou
    Jie Zhang
    Science China(Chemistry), 2023, (04) : 1011 - 1031
  • [2] Electrochemical transformation of biomass-derived oxygenates
    Zhou, Peng
    Zhang, Jie
    SCIENCE CHINA-CHEMISTRY, 2023, 66 (04) : 1011 - 1031
  • [3] Electrochemical transformation of biomass-derived oxygenates
    Peng Zhou
    Jie Zhang
    Science China(Chemistry), 2023, 66 (04) : 1011 - 1031
  • [4] Bifunctional Catalysts for Upgrading of Biomass-Derived Oxygenates: A Review
    Robinson, Allison M.
    Hensley, Jesse E.
    Medlin, J. Will
    ACS CATALYSIS, 2016, 6 (08): : 5026 - 5043
  • [5] Laminar flame speed of lignocellulosic biomass-derived oxygenates and blends of gasoline/oxygenates
    Wu, Yi
    Rossow, Bjorn
    Modica, Vincent
    Yu, Xilong
    Wu, Linlin
    Grisch, Frederic
    FUEL, 2017, 202 : 572 - 582
  • [6] Surface chemistry of biomass-derived multifunctional oxygenates on Pd(111)
    Pang, Simon H.
    Medlin, J. Will H.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2011, 242
  • [7] Renewable alkanes by aqueous-phase reforming of biomass-derived oxygenates
    Huber, GW
    Cortright, RD
    Dumesic, JA
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2004, 43 (12) : 1549 - 1551
  • [8] Recent advances in hydrodeoxygenation of biomass-derived oxygenates over heterogeneous catalysts
    Kim, Soosan
    Kwon, Eilhann E.
    Kim, Yong Tae
    Jung, Sungyup
    Kim, Hyung Ju
    Huber, George W.
    Lee, Jechan
    GREEN CHEMISTRY, 2019, 21 (14) : 3715 - 3743
  • [9] Hydrogenation and hydrodeoxygenation of biomass-derived oxygenates to liquid alkanes for transportation fuels
    Sun, Shaohui
    Yang, Ruishu
    Wang, Xin
    Yan, Shaokang
    DATA IN BRIEF, 2018, 17 : 638 - 646
  • [10] Catalytic steam reforming of biomass-derived oxygenates: Acetic acid and hydroxyacetaldehyde
    Wang, D
    Montane, D
    Chornet, E
    APPLIED CATALYSIS A-GENERAL, 1996, 143 (02) : 245 - 270