[1] Potter M C. Electrical effects accompanying the decomposition of organic compounds[J]. Proceedings of the Royal Society of London: Series B,1911,84(571):260-276.
[2] Logan B E. Simultaneous wastewater treatment and biological electricity generation[J]. Water Science & Technology,2005,52(1/2):31-37.
[3] Lovley D R. Microbial fuel cells: novel microbial physiologies and engineering approaches[J]. Current Opinion in Biotechnology,2006, 17(3):327-333.
[4] Scholz F,Schröder U. Bacterial batteries[J]. Nature biotechnology,2003,21:1151-1152.
[5] Angenent L T,Karim K,Al-Dahhan M H,et al. Production of bioenergy and biochemicals from industrial and agricultural wastewater[J].Trends in Biotechnology,2004,22(9):477-485.
[6] He Zhen,Minteer S D,Angenent L. Electricity generation from artificial wastewater using an upflow microbial fuel cell[J]. Environmental Science & Technology,2005,39(14):5262-5267.
[7] Heijne A T,Liu Fei,van der Weijden R,et al. Copper recovery combined with electricity production in a microbial fuel cell[J].Environmental Science &Technology,2010,44(11):4376-4381.
[8] Butler C S,Clauwaert P,Green S J,et al. Bioelectrochemical perchlorate reduction in a microbial fuel cell[J].Environmental Science & Technology,2010,44(12):4685-4691.
[9] Sun Jian,Hu Yongyou,Bi Zhe,et al. Simultaneous decolorization of azo dye and bioelectricity generation using a microfiltration membrane air-cathode single-chamber microbial fuel cell[J].Bioresource Technology,2009,100(13):3185-3192.
[10] Chun Y G,Kim C S,Peck D H,et al. Performance of a polymer electrolyte membrane fuel cell with thin film catalyst electrodes[J]. Journal of Power Sources,1998,71(1/2):174-178.
[11] He Zhen,Angenent L T. Application of bacterial biocathodes in microbial fuel cells[J]. Electroanalysis,2006,18(19/20):2009-2015.
[12] Rabaey K,Boon N,Siciliano S D,et al.Biofuel cells select for microbial consortia that self-mediate electron transfer[J].Applied and Environmental Microbiology,2004,70(9):5373-5382.
[13] Chaudhuri S K,Lovley D R. Electricity generation by direct oxidation of glucose in mediatorless microbial fuel cells[J]. Nature Biotechnology,2003,21(10):1229-1232.
[14] 布鲁斯·洛根. 微生物燃料电池[M]//冯玉洁,王鑫,译.北京:化学工业出版社,2009:16-22.
[15] Melghit K,Al-Shukeili O S,Al-Amri I. Effect of M-doping(M=Fe,V) on the photocatalytic activity of nanorod rutile TiO2 for Congo red degradation under the sunlight[J]. Ceramics International,2009, 35(1):433-439.
[16] Lu Y H,Xu B,Zhang A H,et al. Hexagonal TiO2 for photoelectrochemical applications[J]. The Journal of Physical Chemistry C,2011,115(36):18042-18045.
[17] Zhuang Jiandong,Dai Wenxin,Tian Qinfen,et al. Photocatalytic degradation of RhB over TiO2 bilayer films:effect of defects and their location[J].Langmuir,2010,26(12):9686-9694.
[18] Kumaresan L,Mahalakshmi M,Palanichamy M,et al. Synthesis, characterization,and photocatalytic activity of Sr2+ doped TiO2 nanoplates[J]. Industrial & Engineering Chemistry Research,2010,49 (4):1480-1485.
[19] Chang S Y,Chen S F,Huang Y C. Synthesis,structural correlations, and photocatalytic properties of TiO2 nanotube/SnO2-Pd nanoparticle heterostructures[J]. The Journal of Physical Chemistry C,2011,115(5):1600-1607.
[20] Kang I C,Zhang Qiwu,Yin Shu,et al. Improvement in photocatalytic activity of TiO2 under visible irradiation through addition of N-TiO2[J]. Environmental Science & Technology,2008,42(10):3622-3626.
[21] Linsebigler A L,Lu Guangquan,Yates J T. Photocatalysis on TiO2 surfaces:principles, mechanisms, and selected results[J]. Chemical Reviews,1995,95(3):735-758.
[22] Jung H S,Lee J K,Lee S,et al. Acid adsorption on TiO2 nanoparticles:An electrochemical properties study[J]. The Journal of Physical Chemistry C,2008,112(22):8476-8480.
[23] Yang K H,Liu Yuchuan,Yu C C,et al. New pathway to prepare surface-enhanced raman scattering-active Au/TiO2 nanocomposites-containing substrates by sonoelectrochemical methods[J]. The Journal of Physical Chemistry C,2010,114(30):12863-12869.
[24] Lu Anhuai,Li Yan,Jin Song,et al. Microbial fuel cell equipped with a photocatalytic rutile-coated cathode[J].Energy & Fuels, 2010,24(2):1184-1190.
[25] Ding Hongrui,Li Yan,Lu Anhuai,et al. Photocatalytically improved azo dye reduction in a microbial fuel cell with rutile-cathode[J]. Bioresource Technology,2010,101(10):3500-3505.
[26] Li Yan,Lu Anhuai,Ding Hongrui,et al. Cr(Ⅵ) reduction at rutilecatalyzed cathode in microbial fuel cells[J]. Electrochemistry Communications,2009,11(7):1496-1499.
[27] 陈钊,丁竑端,陈伟华,等. 太阳能电池在微生物燃料电池中的光电催化性能研究[J]. 物理学报,2012,61(24):543-547. |