文献类型: 外文期刊
作者: Chen, Bingkun;Hou, Qidong;Smith, Richard Lee;Qi, Xinhua;Guo, Haixin
作者机构:
期刊名称: GREEN CHEMISTRY
ISSN: 1463-9262
年卷期: 2025 年
页码:
收录情况: SCIE(2025版) ; ; EI(2025版)
摘要: Electrocatalytic conversion of biomass will become necessary for achieving the sustainable production of many kinds of chemicals. In this review, an analysis of catalysts, cell design, coupling reactions, separation and production methods is given for the conversion of 5-hydroxymethylfurfural (HMF) into 2,5-furandicarboxylic acid (FDCA) via electrochemical oxidation. Transition metal-based catalysts (e.g. Ni) can achieve a balance between activity and selectivity. However, issues such as low stability and insufficient active sites hinder the electrocatalytic efficiency of the conversion of HMF into FDCA with transition metal-based catalysts. Enhancements can be achieved through controlling the catalyst morphology and particle size, doping with heteroatoms (N, S, P), crystal structure regulation, and defect/vacancy creation. The design of the electrolytic cell is critical to the stability of the electrocatalytic oxidation of HMF, and the membrane electrolytic cell (MEA) combined with feed separation can reduce side-product formation (e.g. <10% humins) at high HMF concentrations (100 mM) in alkaline electrolytes (1 M KOH). Coupling the electrocatalytic oxidation of HMF with reduction reactions (e.g. hydrogen evolution reaction, nitrogen reduction reaction) can achieve up to twice the energy efficiency, while bifunctional electrocatalysts can balance the potentials and electrocatalytic rates of the cathode and anode. Using organic solvents (e.g. methanol or isobutanol) and controlled temperatures (393 K to 413 K), FDCA (>90%) can be effectively separated and purified at production rates of up to an estimated 33 000 tonnes of FDCA per year (95% HMF conversion) from a feed stream in which KOH can be separated from HMF with current technology. The stability of electrolytic systems under high current densities (>500 mA cm(-2)) is an important factor in industrial applications. Increasing the electrode area or modifying the coordination bonds of the sites can help to remove bottleneck issues associated with long operating hours at high current densities.
分类号:
- 相关文献
作者其他论文 更多>>
-
Encapsulation of Carbon Nanotubes with Sulfonated Polymer for Photothermal Conversion of Fructose with Superior Productivity
作者:Tang, Yao;Qian, Hengli;Xie, Chao;Xia, Tianliang;Wang, Chengxu;Zhang, Chaojie;Cai, Jiahui;Bai, Xinyu;Yu, Guanjie;Zhou, Shuwen;Qu, Fei;Guo, Haixin;Qi, Xinhua;Ju, Meiting;Hou, Qidong
关键词:biomass;fructose;dehydration;5-hydroxymethylfurfural;Bronsted acid
-
Effects of biochar pyrolysis temperature on soil carbon and nitrogen turnover and life cycle assessment
作者:Gao, Ying;Cui, Haojie;Guo, Haixin
关键词:Biochar property;Pyrolysis temperature;Soil nutrient;Carbon sequestration
-
NiFeCo wrinkled nanosheet electrode for selective oxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid
作者:Chen, Bingkun;Yang, Bowen;Su, Yaqiong;Hou, Qidong;Smith Jr, Richard Lee;Qi, Xinhua;Guo, Haixin
关键词:
-
Insights into the mechanism of mechanically treated Fe/Mn-N doped seed meal hydrochar for efficient adsorption and degradation of tetracycline
作者:Li, Xue;Li, Liangyu;Zhang, Zulin;Ma, Yongfei;Smith Jr, Richard Lee;Guo, Haixin;Zhao, Ran;Liu, Yiming;Yang, Fengxia;Ding, Yongzhen
关键词:Fe/Mn-N doped hydrochar;Ball milling;Adsorption;Degradation;Tetracycline removal
-
Selective leaching and recovery of phosphorus from incinerated sewage sludge ash with CaO addition
作者:Yang, Zhonghua;Du, Chuanming;Yuan, Ruiyuan;Guo, Haixin
关键词:ISSA;CaO addition;Selective leaching;Phosphorus recovery;Hydroxyapatite
-
Enhanced hole-proton-coupled electron transfer of spin polarized photocatalyst via Mo-S4 coordination for sequential activation of C (sp3)-H and O-H bonds
作者:Wang, Xiaoping;Yang, Bowen;Wang, Haoye;Guo, Haixin;Smith, Richard Lee;Su, Yaqiong;Qi, Xinhua
关键词:Photooxidation;Mo-Vs-ZIS;Spin polarization;Proton-coupled electron transfer;C(sp3)-H activation
-
Confinement of Tin Phosphates in Mesoporous Channels of Zeolite To Enhance Lewis Acidity for Glucose Isomerization
作者:Yu, Guanjie;Wang, Chengxu;Lai, Ruite;Tang, Yao;Qian, Hengli;Xie, Chao;Xia, Tianliang;Bai, Xinyu;Qu, Fei;Zhang, Chaojie;Zhou, Shuwen;Guo, Haixin;Song, Shaolan;Ju, Meiting;Hou, Qidong
关键词:glucose;isomerization;Lewis acid;confinement effect;fructose