微生物燃料电池体系中阴极催化材料研究进展

任林德, 柳华*

化工新型材料 ›› 2022, Vol. 50 ›› Issue (12) : 65 -72.

PDF
化工新型材料 ›› 2022, Vol. 50 ›› Issue (12) : 65-72. DOI: 10.19817/j.cnki.issn1006-3536.2022.12.013
综述与专论

微生物燃料电池体系中阴极催化材料研究进展

    任林德, 柳华*
作者信息 +

Research progress of cathode catalytic materials in microbial fuel cell systems

  • Ren Linde, Liu Hua
Author information +
文章历史 +
PDF

摘要

微生物燃料电池(MFC)是一种新兴的生物电化学技术,它能够将污水中的有机物分解并同时产生生物电能。MFC较低的产电效率是其大规模应用的限制因素,而MFC反应体系中阴极催化材料是解决该问题的关键。综述了目前阴极催化材料领域的研究进展,为进一步开发成本低廉、性能优异的催化材料提供参考。

Abstract

Microbial fuel cell (MFC),as a new kind of promising bioelectrochemical technology cell,can decompose organic matter in sewage and produce electricity simultaneously.However,the lower power generation efficiency of MFC limits its large-scale application,and the cathode catalyst material in the MFC reaction system is the key to solve this problem.This paper reviewed the current research progress in the field of cathode catalytic materials and tried to provide a reference for the further development of low-cost and excellent catalytic materials.

关键词

微生物燃料电池 / 阴极电极 / 催化材料

Key words

microbial fuel cell (MFC) / the cathode electrode / catalytic material

引用本文

引用格式 ▾
微生物燃料电池体系中阴极催化材料研究进展[J]. 化工新型材料, 2022, 50(12): 65-72 DOI:10.19817/j.cnki.issn1006-3536.2022.12.013

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Alsayed A,Soliman M,Eldyasti A.Microbial fuel cells for municipal wastewater treatment:from technology fundamentals to full-scale development[J].Renewable and Sustainable Energy Reviews,2020,134:110367.
[2] James C,Meenal S H,Elakkiya S,et al.Sustainable environment through treatment of domestic sewage using MFC[J].Materials Today:Proceedings,2021,37(2):1495-1502.
[3] Munoz-Cupa C,Hu Y L,Xu C B,et al.An overview of microbial fuel cell usage in wastewater treatment,resource recovery and energy production[J].Science of the Total Environment,2021,754:142429.
[4] Nguyen D A,Pham N,Pham H T.Wastewater treatment performance and microbial community of anode electrodes of membrane and membrane-less MFCs under effect of sunlight[J].Journal of Water Process Engineering,2021,42:102159.
[5] Xian J L,Ma H,Li Z,et al.α-FeOOH nanowires loaded on carbon paper anodes improve the performance of microbial fuel cells[J].Chemosphere,2021,273:129669.
[6] Lou X G,Liu Z L,Hou J X,et al.Modification of the anodes using MoS2 nanoflowers for improving microbial fuel cells performance[J].Catalysis Today,2021,364:111-117.
[7] Yaqoob A A,Ibrahim M N M,Guerrero-Barajas C.Modern trend of anodes in microbial fuel cells (MFCs):an overview[J].Environmental Technology & Innovation,2021,23:101579.
[8] Wang M C,Wang Z U,Hu F,et al.Polyelectrolytes/α-Fe2O3 modification of carbon cloth anode for dealing with food wastewater in microbial fuel cell[J].Carbon Resources Conversion,2020,3:76-81.
[9] Li Y F,Liu J,Chen X P,et al.Enhanced electricity generation and extracellular electron transfer by polydopamine-reduced graphene oxide (PDA-rGO) modification for high-performance anode in microbial fuel cell[J].Chemical Engineering Journal,2020,387:123408.
[10] Noori M T,Ghangrekar M M,Mukherjee C K.V2O5 microflower decorated cathode for enhancing power generation in air-cathode microbial fuel cell treating fish market wastewater[J].International Journal of Hydrogen Energy,2016,41(5):3638-3645.
[11] Huang S,Zhang J R,Pi J C,et al.Long-term electricity generation and denitrification performance of MFCs with different exchange membranes and electrode materials[J].Bioelectrochemistry,2021,140:107748.
[12] He W Y,Wei J H,Huang T,et al.Enhanced electricity production in single-chamber MFCs with air cathodes decorated by Fe-N-C catalysts derived from 5H-dibenz[b,f] azepine-5-carboxamide(carbamazepine)[J].International Journal of Hydrogen Energy,2020,45(35):17525-17532.
[13] Kaur P,Verma G,Sekhon S.Biomass derived hierarchical porous carbon materials as oxygen reduction reaction electrocatalysts in fuel cells[J].Progress in Materials Science,2019,102:1-71.
[14] Gebresemati M,Das G,Park B J,et al.Electricity production from macroalgae by a microbial fuel cell using nickel nanoparticles as cathode catalysts[J].International Journal of Hydrogen Energy,2017,42(50):29874-29880.
[15] Cheng S A,Liu H,Logan B E.Power densities using different cathode catalysts (Pt and CoTMPP) and polymer binders (Nafion and PTFE) in single chamber microbial fuel cells[J].Environmental Science & Technology,2006,40(1):364-369.
[16] Pu L T,Li K X,Chen Z H,et al.Silver electrodeposition on the activated carbon air cathode for performance improvement in microbial fuel cells[J].Journal of Power Sources,2014,268:476-481.
[17] Mustakeem.Electrode materials for microbial fuel cells:nanomaterial approach[J].Materials for Renewable & Sustainable Energy,2015,4(4):22.
[18] Chen W W,Liu Z L,Li Y X,et al.A novel stainless steel fiber felt/Pd nanocatalysts electrode for efficient ORR in air-cathode microbial fuel cells[J].Electrochimica Acta,2019,324:134862.
[19] Noori M T,Jain S C,Ghangrekar M M,et al.Biofouling inhibition and enhancing performance of microbial fuel cell using silver nano-particles as fungicide and cathode catalyst[J].Bioresource Technology,2016,220:183-189.
[20] Li S Z,Hu Y Y,Xu Q,et al.Iron-and nitrogen-functionalized graphene as a non-precious metal catalyst for enhanced oxygen reduction in an air-cathode microbial fuel cell[J].Journal of Power Sources,2012,213:265-269.
[21] Yan H J,Saito T,Regan J M.Nitrogen removal in a single-chamber microbial fuel cell with nitrifying biofilm enriched at the air cathode[J].Water Research,2012,46(7):2215-2224.
[22] Zhang F,Chen G,Hickner M A,et al.Novel anti-flooding poly(dimethylsiloxane)(PDMS) catalyst binder for microbial fuel cell cathodes[J].Journal of Power Sources,2012,218:100-105.
[23] 王鑫.微生物燃料电池中多元生物质产电特性与关键技术研究[D].哈尔滨:哈尔滨工业大学,2010.
[24] 郑琳姗,张秀玲,李惠雨,等.微生物燃料电池技术及其影响因素研究进展[J].精细化工,2021,38(1):1-8.
[25] Du Y,Ma F X,Xu C Y,et al.Nitrogen-doped carbon nanotubes/reduced graphene oxide nanosheet hybrids towards enhanced cathodic oxygen reduction and power generation of microbial fuel cells[J].Nano Energy,2019,61:533-539.
[26] Lv C C,Liang B L,Zhong M,et al.Activated carbon-supported multi-doped graphene as high-efficient catalyst to modify air cathode in microbial fuel cells[J].Electrochimica Acta,2019,304:360-369.
[27] Liu W F,Zhou Z H,Li Z,et al.Cobalt phosphide embedded N-doped carbon nanopolyhedral as an efficient cathode electrocatalyst in microbial fuel cells[J].Journal of Environmental Chemical Engineering,2021,9(1):104582.
[28] Wang Y,Zhong K Q,Li H,et al.Bimetallic hybrids modified with carbon nanotubes as cathode catalysts for microbial fuel cell:effective oxygen reduction catalysis and inhibition of biofilm formation[J].Journal of Power Sources,2021,485:229273.
[29] Wang X J,Yuan C F,Shao C F,et al.Enhancing oxygen reduction reaction by using metal-free nitrogen-doped carbon black as cathode catalysts in microbial fuel cells treating wastewater[J].Environmental Research,2020,182:109011.
[30] Ortiz-Martínez V M,Touati K,Salar-García M J,et al.Mixed transition metal-manganese oxides as catalysts in MFCs for bioenergy generation from industrial wastewater[J].Biochemical Engineering Journal,2019,151:107310.
[31] Zhang S,Su W,Li K X,et al.Metal organic framework-derived Co3O4/NiCo2O4 double-shelled nanocage modified activated carbon air-cathode for improving power generation in microbial fuel cell[J].Journal of Power Sources,2018,396:355-362.
[32] Jiang L T,Chen J F,Han D Q,et al.Potential of core-shell NiFe layered double hydroxide@Co3O4 nanostructures as cathode catalysts for oxygen reduction reaction in microbial fuel cells[J].Journal of Power Sources,2020,453:227877.
[33] Yu M Y,Yang W L,Yuan X L,et al.Enhanced oxygen reduction activity and high-quality effluent of membrane filtration electrodes with Prussian blue in microbial fuel cells[J].Science of The Total Environment,2021,753:142021.
[34] Yu M Y,Yang Q,Yuan X L,et al.Boosting oxygen reduction and permeability properties of doped iron-porphyrin membrane cathode in microbial fuel cells[J].Bioresource Technology,2021,320:124343.
[35] Li M,Zhou J,Bi Y G,et al.Polypyrrole/sewage sludge carbon as low-cost and high-effective catalyst for enhancing hexavalent chromium reduction and bio-power generation in dual chamber microbial fuel cells[J].Separation and Purification Technology,2021,256:117805.
[36] Yang W L,Wang X,Son M,et al.Simultaneously enhancing power density and coulombic efficiency with a hydrophobic Fe-N4/activated carbon air cathode for microbial fuel cells[J].Journal of Power Sources,2020,465:228264.
[37] Han W L,Li C H,Jiang Y,et al.Atomically-dispersed Fe-Nx and C-S-C ordered mesoporous carbons as efficient catalysts for the oxygen reduction reaction in a microbial fuel cell[J].Journal of Alloys and Compounds,2021,852:156994.

基金资助

宁夏重点研发项目(引才专项)(2020BEB04036);北方民族大学科研启动项目(2020KYQD42)

AI Summary AI Mindmap
PDF

468

访问

0

被引

导航
相关文章

AI思维导图

/