A carbon membrane-aerated electrochemical reactor for efficient electrosynthesis of H2O2

被引:0
|
作者
Dong, Jiawei [1 ,2 ]
Du, Minghui [1 ,3 ]
Wang, Hong [1 ,3 ]
Cui, Zhengyu [1 ,3 ]
Gui, Shuanglin [4 ]
Jiang, Qinliang [4 ]
Li, Jianxin [1 ,3 ,5 ]
机构
[1] Tiangong Univ, Natl Ctr Int Joint Res Membrane Sci & Technol, State Key Lab Separat Membranes & Membrane Proc, Tianjin 300387, Peoples R China
[2] Tiangong Univ, Sch Chem Engn & Technol, Tianjin 300387, Peoples R China
[3] Tiangong Univ, Sch Mat Sci & Engn, Tianjin 300387, Peoples R China
[4] Jiangxi Acad Sci, Inst Energy Res, Nanchang 330096, Peoples R China
[5] Univ South Africa Sci Campus, Inst Nanotechnol & Water Sustainabil, Coll Sci Engn & Technol, ZA-1710 Johannesburg, South Africa
关键词
Carbon membrane; Electro-production of H 2 O 2; Membrane aeration; Oxygen transfer; Aerated electrochemical reactor; ELECTRO-FENTON; DEGRADATION; ADSORPTION; SYSTEM; OXYGEN;
D O I
10.1016/j.cej.2025.159609
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The electro-production of H2O2 holds significant potential. However, traditional plate electrodes are limited by oxygen transfer, leading to unsatisfactory yields. Herein, two carbon membranes (CMs) (30 x 40 mm) as both anode and cathode/aerator and an ion exchange membrane were utilised to construct a membrane aeration electrochemical reactor (MAER). Compared with conventional aerated electrochemical reactor (CAER), the MAER is equipped with aerators in the main cathode tank. Specifically, the CM with an average pore size of 288 nm, a porosity of 52.6 %, an electrical conductivity of 5437 S/m, and a mechanical strength of 14.3 MPa, enables O2 to be transferred from inside to the bulk solution as microbubbles. The results indicated that the H2O2 production in the MAER (750 mg L- 1) was substantially higher than that in CAER (60 mg L- 1). The steady-state current value in MAER (0.226 A) was also greater than that in CAER (0.085 A). The MAER's efficient H2O2 production is attributed to the structural characteristics of the CM, whereby O2 diffuses through the nano-pores into the bulk solution. Additionally, the electrons (e- ) and protons (H+) generated by electrolysis exhaustively interact with oxygen, enhancing H2O2 production. Moreover, aeration-induced disturbance inhibits H2O2 reduction. Simultaneously, the oxygen bubbles dissolved in the bulk solution will continue to return to the electrode surface to participate in the ORR reaction. Under optimal conditions, the MAER demonstrated a higher H2O2 yield (9.23 mg h- 1 cm- 2), a current efficiency (CE) of approximately 100 %, and excellent long-term stability. Finally, the mechanism of in-situ diffusion effect of bubble and continuous interfacial reaction enhancing H2O2 formation was proposed. This study proposes a novel method for the electrochemical production of H2O2.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Spatial confinement: Size effect on carbon supports for the H2O2 electrosynthesis of cobalt phthalocyanines
    Di, Yajing
    Li, Minkuan
    Zhao, Anran
    Wang, Yuechen
    Chen, Yu
    Li, Zhilin
    Fujishige, Masatsugu
    Endo, Morinobu
    Zhang, Zhengping
    Wang, Feng
    CARBON, 2025, 238
  • [32] Advancing H2O2 electrosynthesis: enhancing electrochemical systems, unveiling emerging applications, and seizing opportunities
    Deng, Zhiping
    Choi, Seung Joon
    Li, Ge
    Wang, Xiaolei
    CHEMICAL SOCIETY REVIEWS, 2024, 53 (16) : 8137 - 8181
  • [33] EVALUATION OF THE DEGRADATION OF SODIUM DICLOFENAC USING H2O2/FENTON IN ELECTROCHEMICAL REACTOR
    Rocha, Robson S.
    Beati, Andre A. G. F.
    Oliveira, Joaquim G.
    Lanza, Marcos R. V.
    QUIMICA NOVA, 2009, 32 (02): : 354 - 358
  • [34] Development of a reactor with carbon catalysts for modular-scale, low-cost electrochemical generation of H2O2
    Chen, Zhihua
    Chen, Shucheng
    Siahrostami, Samira
    Chakthranont, Pongkarn
    Hahn, Christopher
    Nordlund, Dennis
    Dimosthenis, Sokaras
    Norskov, Jens K.
    Bao, Zhenan
    Jaramillo, Thomas F.
    REACTION CHEMISTRY & ENGINEERING, 2017, 2 (02): : 239 - 245
  • [35] Electrochemical generation of H2O2: Development of a reactor with carbon catalysts for portable low-cost water purification
    Chen, Zhihua
    Chen, Shucheng
    Siahrostami, Samira
    Chakthranont, Pongkarn
    Hahn, Christopher
    Nordlund, Dennis
    Sokaras, Dimosthenis
    Norskov, Jens
    Bao, Zhenan
    Jaramillo, Thomas
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 253
  • [36] Sulfur-Vacancy-Rich Pd Metallene Sulfide Nanosheets for the Efficient Electrosynthesis of H2O2
    Wang, Hongjing
    Mu, Xu
    Mao, Qiqi
    Deng, Kai
    Yu, Hongjie
    Xu, You
    Wang, Ziqiang
    Wang, Liang
    ACS APPLIED NANO MATERIALS, 2023, 7 (01) : 881 - 888
  • [37] Efficient H2O2 Electrosynthesis and Its Electro-Fenton Application for Refractory Organics Degradation
    Li, Lei
    Bai, Jing
    Jiang, Panyu
    Zhang, Yan
    Zhou, Tingsheng
    Wang, Jiachen
    Zhou, Changhui
    Li, Jinhua
    Zhou, Baoxue
    ENGINEERING, 2023, 30 : 131 - 143
  • [38] Efficient Electrochemical Production of H2O2 on Hollow N-Doped Carbon Nanospheres with Abundant Micropores
    Hu, Yezhou
    Zhang, Jingjing
    Shen, Tao
    Li, Zhengrong
    Chen, Ke
    Lu, Yun
    Zhang, Jian
    Wang, Deli
    ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (25) : 29551 - 29557
  • [39] Regulation of plasma membrane permeability to H2O2 during adaptation to H2O2
    Antunes, Fernando
    Marinho, H. Susana
    Cyrne, Luisa
    FREE RADICAL RESEARCH, 2007, 41 : S8 - S8
  • [40] Modeling the electrosynthesis of H2O2: Understanding the role of predatory species
    Cordeiro-Junior, Paulo Jorge Marques
    Lanza, Marcos Roberto de Vasconcelos
    Rodrigo, Manuel Andres Rodrigo
    CHEMICAL ENGINEERING SCIENCE, 2023, 273