微生物燃料电池技术最新研究进展Recent Progress in Microbial Fuel Cells Research
张静;张宝刚;冯传平;刘晔;田彩星;刘惠鹏;周顺桂;倪晋仁;
摘要(Abstract):
微生物燃料电池(Microbial Fuel Cells,MFC)集产电和处理污染物于一体,是微生物技术与电化学技术相结合的产物,近年来受到广泛关注。文章从微生物燃料电池的产电微生物分离与鉴定、反应器构型设计与改进、电池材料改性与开发、运行条件摸索与优化、技术应用尝试与探究等方面介绍了微生物燃料电池技术的最新研究进展,并分析了该领域未来发展的主要方向,为进一步提高微生物燃料电池的产电性能及扩大其实际应用提供了思路。
关键词(KeyWords): 微生物燃料电池;微生物;反应器构型;电极材料;运行条件;技术应用
基金项目(Foundation): 高等学校博士学科点专项科研基金(20120022120005);; 中央高校基本科研业务费(2011YYL109)联合资助
作者(Authors): 张静;张宝刚;冯传平;刘晔;田彩星;刘惠鹏;周顺桂;倪晋仁;
DOI: 10.14068/j.ceia.2013.02.002
参考文献(References):
- [1]Logan BE,Hamelers B,Rozendal R,et al.Microbial fuel cells:methodology and technology[J].Environ Sci Technol,2006,40(17):5181-5192.
- [2]赵丽坤,闫蕾蕾,李景晨,等.产电微生物与微生物燃料电池研究进展[J].安徽农业科学,2010,38(26):14227-14229,14245.
- [3]Biffinger JC,Fitzgerald LA,Ray R,et al.The utility of She-wanella japonica for microbial fuel cell[J].Bioresour Technol,2011,102(1):290-297.
- [4]Strycharz SM,Glaven RH,Coppi MV,et al.Gene expression and deletion analysis of mechanisms for electron transfer from electrodes to Geobacter sulfurreducens[J].Bioelectrochem,2011,80(2):142-150.
- [5]Hubenova Y,Mitov M.Potential application of Candida melibiosica in biofuel cells[J].Bioelectrochem,2010,78(1):57-61.
- [6]Fu C,Hung T,Wu W,et al.Current and voltage responses in instant photosynthetic microbial cells with Spirulina platen-sis[J].Biochem Eng J,2010,52(2-3):175-180.
- [7]Logan BE.Exoelectrogenic bacteria that power microbial fuel cells[J].Nature Reviews Microbiology,2009,7:375-381.
- [8]卢娜,周顺桂,倪晋仁.微生物燃料电池的产电机制研究进展[J].化学进展,2008,20(7-8):1233-1240.
- [9]Rahimnejad M,Ghoreyshi AA,Najafpour GD,et al.A novel microbial fuel cell stack for continuous production of clean en-ergy[J].International Journal of Hydrogen Energy,2012,37(7):5992-6000.
- [10]Oh S,Logan BE.Voltage reversal during microbial fuel cell stack operation[J].J Power Sources,2007,167(1):11-17.
- [11]Cao X,Huang X,Liang P,et al.A new method for water desalination using microbial desalination cells[J].Environ Sci Technol,2009,43(18):7148-7152.
- [12]Zeng Y,Choo YF,Kim BH,et al.Modeling and simulation of two-chamber microbial fuel cell[J].J Power Sources,2010,195(1):79-89.
- [13]Wen Q,Wu Y,Cao D,et al.Electricity generation and mod-eling of microbial fuel cell from continuous beer brewery wastewater[J].Biores Technol,2009,100(18):4171-4175.
- [14]Zhang Y,Sun J,Hou B,et al.Performance improvement of air-cathode single-chamber microbial fuel cell using a meso-porous carbon modified anode[J].J Power Sources,2011,196(18):7458-7464.
- [15]Zhao Y,Watanabe K,Hashimoto K.Hierarchical micro/nano structures of carbon composites as anodes for microbial fuel cells[J].Phys Chem Chem Phys,2011,13(33):15016-15021.
- [16]Heijne AT,Liu F,Rijnsoever LS,et al.Performance of a scaled-up Microbial Fuel Cell with iron reduction as the cathode reaction[J].J Power Sources,2011,196(18):7572-7577.
- [17]Zhang B,Feng C,Ni J,et al.Simultaneous reduction of va-nadium(V)and chromium(VI)with enhanced energy recov-ery based on microbial fuel cell technology[J].J Power Sources,2012,204:34-39.
- [18]Zhang F,He Z.Simultaneous nitrification and denitrification with electricity generation in dual-cathode microbial fuel cells[J].J Chem Technol Biot,2012,87(1):153-159.
- [19]Huang L,Chai X,Chen G,et al.Effect of set potential on hexavalent chromium reduction and electricity generation from biocathode microbial fuel cells[J].Environ Sci Technol,2011,45(11):5025-5031.
- [20]Li X,Hu BX,Suib S,et al.Manganese dioxide as a new cathode catalyst in microbial fuel cells[J].J Power Sources,2010,195(9):2586-2591.
- [21]Yuan Y,Zhou SG,Zhuang L.Polypyrrole/carbon black composite as a novel oxygen reduction catalyst for microbial fuel cells[J].J Power Sources,2010,195(11):3490-3493.
- [22]Deng L,Zhou M,Liu C,et al.Development of high per-formance of Co/Fe/N/CNT nanocatalyst for oxygen reduc-tion in microbial fuel cells[J].Talanta,2010,81(1-2):444-448.
- [23]Mahmoud M,Gad-Allah TA,El-Khatib KM,et al.Power generation using spinel manganese-cobalt oxide as a cathode catalyst for microbial fuel cell applications[J].Biores Techn-ol,2011,102(22):10459-10464.
- [24]Birry L,Mehta P,Jaouen F,et al.Application of iron-based cathode catalysts in a microbial fuel cell[J].Electrochim Ac-ta,2011,56(3):1505-1511.
- [25]Zhang Y,Hua Y,Li S,et al.Manganese dioxide-coated car-bon nanotubes as an improved cathodic catalyst for oxygen re-duction in a microbial fuel cell[J].J Power Sources,2011,196(22):9284-9289.
- [26]Zhang Y,Mo G,Li X,et al.Iron tetrasulfophthalocyanine functionalized graphene as a platinum-free cathodic catalyst for efficient oxygen reduction in microbial fuel cells[J].J Power Sources,2012,197:93-96.
- [27]Huang L,Regan JM,Quan X.Electron transfer mecha-nisms,new applications,and performance of biocathode mi-crobial fuel cells[J].Biores Technol,2011,102(1):316-32.
- [28]Sivasankaran A,Sangeetha D.Development of MFC using sulphonated polyether ether ketone(SPEEK)membrane for electricity generation from waste water[J].Biores Technol,2011,102(24):11167-11171.
- [29]Watson VJ,Saito T,Hickner MA,et al.Polymer coatings as separator layers for microbial fuel cell cathodes[J].J Pow-er Sources,2011,196(6):3009-3014.
- [30]Xie S,Ouyang K,Li L.Reseach of membranes as the sepa-rators for microbial fuel cells[J].Tehnology of Water Treat-ment,2011,37(8):15-18.
- [31]Zhang L,Li C,Ding L,et al.Influences of initial pH on per-formance and anodic microbes of fed-batch microbial fuel cells[J].J Chem Technol Biot,2011,86(9):1125-1232.
- [32]Nam JR,Kim HW,Shin HS.Ammonia inhibition of elec-tricity generation in single-chambered microbial fuel cells[J].J Power Sources,2010,195(19):6428-6433.
- [33]Pham HT,Boon N,Aelterman P,et al.High shear enrich-ment improves the performance of the anodophilic microbial consortium in a microbial fuel cell[J].Microb Biotechnol,2008,1(6):487-496.
- [34]Wen Q,Wu Y,Zhao L,et al.Production of electricity from the treatment of continuous brewery wastewater using a mi-crobial fuel cell[J].Fuel,2010,89(7):1381-1385.
- [35]Patil SA,Surakasi V,Koul S,et al.Electricity generation u-sing chocolate industry wastewater and its treatment in acti-vated sludge based microbial fuel cell and analysis of devel-oped microbial community in the anode chamber[J].Biores Technol,2009,100(21):5132-5139.
- [36]Weld RJ,Singh R.Functional stability of a hybrid anaerobic digester/microbial fuel cell system treating municipal wastewater[J].Biores Technol,2011,102(2):842-847.
- [37]Durruty I,Bonanni PS,González JF,et al.Evaluation of po-tato-processing wastewater treatment in a microbial fuel cell[J].Biores Technol,2012,105:81-87.
- [38]Lu N,Zhou S,Zhuang L,et al.Electricity generation from starch processing wastewater using microbial fuel cell tech-nology[J].Biochem Eng J,2009,43(3):246-251.
- [39]Kaewkannetra P,Chiwes W,Chiu TY.Treatment of cassava mill wastewater and production of electricity through microbi-al fuel cell technology[J].Fuel,2011,90(8):2746-2750.
- [40]Wen Q,Wu Y,Cao D,et al.Electricity generation and mod-eling of microbial fuel cell from continuous beer brewery wastewater[J].Biores Technol,2009,100(18):4171-4175.
- [41]Sangeetha T,Muthukumar M.Catholyte Performance as an influencing factor on electricity production in a dual-cham-bered microbial fuel cell employing food processing wastewater[J].Energy Sources,2011,33(16):1514-1522.
- [42]Zhang B,Zhao H,Zhou S,et al.A novel UASB-MFC-BAF integrated system for high strength molasses wastewater treatment and bioelectricity generation[J].Biores Technol,2009,100(23):5687-5693.
- [43]Liu H,Grot S,Logan BE.Electrochemically assisted micro-bial production of hydrogen from acetate[J].Environ Sci Technol,2005,39(11):4317-4320.
- [44]Lorenzo MD,Curtis TP,Head IM,et al.A single-chamber microbial fuel cell as a biosensor for wastewaters[J].Water Res,2009,43(13):3145-3154.
- [45]Liu Z,Liu J,Zhang S,et al.Microbial fuel cell based bio-sensor for in situ monitoring of anaerobic digestion process[J].Biores Technol,2011,102(22):10221-10229.
- [46]Davilia D,Esquivel JP,Sabate N,et al.Silicon-based micro-fabricated microbial fuel cell toxicity sensor[J].Biosens Bio-electron,2011,26(5):2426-2430.