\[31\]Kim,H.J.,M.S.Hyun,I.S.Chang,et al.A microbial fuel cell type lactate biosensor using a metalreducing,Shewanella putrefaciens\[J\].Journal of Microbiology and Biotechnology,1999,9(3):365-367.
[2]
\[32\]Kim,B.H.,I.S.Chang,G.C.Gil.Novel BOD (biological oxygen demand) sensor using mediatorless microbial fuel cell\[J\].Biotechnology Letters,2003,25(7):541-545.
[3]
\[33\]Kim,M.,M.S.Hyun,G.M.Gadd,et al.A novel biomonitoring system using microbial fuel cells\[J\].Journal of Environmental Monitoring,2007,9(12):1 323-1 328.
[4]
\[34\]Shen,Y.J.,O.Lefebvre,Z.Tan,et al.Microbial fuelcellbased toxicity sensor for fast monitoring of acidic toxicity\[J\].Water Science & Technology,2012,65(7),1 223-1 228.
[5]
\[35\][JP2]Jeon,H.J.,K.W.Seo,S.H.Lee,et al.Production of algal biomass (Chlorella vulgaris) using sediment microbial fuel cells\[J\].Bioresource Technology,2012,109 (Special Issue):308-311.[JP]
[6]
\[36\]Almeida,J.,M.Bertilsson,M.GorwaGrauslund,et al.Metabolic effects of furaldehydes and impacts on biotechnological processes\[J\].Applied Microbiology and Biotechnology,2009,82(4):625-638.〖ZK)〗[KH*2D]
[7]
〖ZK(#〗Yan,Z.,N.Song,H.Cai,et al.Enhanced degradation of phenanthrene and pyrene in freshwater sediments by combined employment of sediment microbial fuel cell and amorphous ferric hydroxide\[J\].Journal of Hazardous Materials,2012,199-200:217-225.
[8]
Song,T.S.,Z.S.Yan,Z.W.Zhao,et al.Removal of organic matter in freshwater sediment by microbial fuel cells at various external resistances\[J\].Journal of Chemical Technology and Biotechnology,2010,85(11):1 489-1 493.
Reimers,C.E.,L.M.Tender,S.Fertig,et al.Harvesting energy from the marine sedimentwater interface\[J\].Environmental Science & Technology,2001,35(1):192-195.
[11]
Donovan,C.,A.Dewan,D.Heo,et al.Batteryless,wireless sensor powered by a sediment microbial fuel cell\[J\].Environmental Science & Technology,2008,42(22):8 591-8 596.
[12]
Logan,B.E.,K.Rabaey.Conversion of wastes into bioelectricity and chemicals by using microbial electrochemical technologies\[J\].Science,2012,337:686-690.
[13]
Nielsen,M.E.,C.E.Reimers,H.A.Stecher.Enhanced power from chambered benthic microbial fuel cells\[J\].Environmental Science & Technology,2007,41(22):7 895-7 900.
[14]
He,Z.,H.B.Shao,L.T.Angenent.Increased power production from a sediment microbial fuel cell with a rotating cathode\[J\].Biosensors and Bioelectronics,2007,22(12):3 252-3 255.
[15]
Dumas,C.,A.Mollica,D.Feron,et al.Checking graphite and stainless anodes with an experimental model of marine microbial fuel cell\[J\].Bioresource Technology,2008,99 (18):8 887-8 894.
[16]
\[10\]Lowy,D.A.,L.M.Tender,J.G.Zeikus,et al.Harvesting energy from the marine sedimentwater interface II.Kinetic activity of anode materials\[J\].Biosensors and Bioelectronics,2006,21(11):2 058-2 063.
[17]
Rezaei,F.,T.L.Richard,R.A.Brennan,et al.Substrateenhanced microbial fuel cells for improved remote power generation from sedimentbased systems\[J\].Environmental Science & Technology,2007,41(11):4 053-4 058.
[18]
\[12\]Kaku,N.,N.Yonezawa,Y.Kodama,et al.Plant/microbe cooperation for electricity generation in a rice paddy field\[J\].Applied Microbiology and Biotechnology,2008,79(1):43-49.
[19]
\[13\]Holmes,D.E.,D.R.Bond,R.A.Oneil,et al.Microbial communities associated with electrodes harvesting electricity from a variety of aquatic sediments\[J\].Microbial Ecology,2004,48(2):178-190.
[20]
\[14\]Scott,K.,I.Cotlarciuc,D.Hall,et al.Power from marine sediment fuel cells:The influence of anode material\[J\].Journal of Applied Electrochemistry,2008,38(9):1 313-1 319.
[21]
\[15\]Lowy,D.A.,L.M.Tender.Harvesting energy from the marine sedimentwater interface III.Kinetic activity of quinoneand antimonybased anode materials\[J\].Journal of Power Sources,2008,185(1):70-75.
[22]
\[16\]Hong,S.W.,I.S.Chang,Y.S.Choi,et al.Experimental evaluation of influential factors for electricity harvesting from sediment using microbial fuel cell\[J\].Bioresource Technology,2009,100(12):3 029-3 035.
[23]
\[17\]Hong,S.W.,H.J.Kim,Y.S.Choi,et al.Field experiments on bioelectricity production from lake sediment using microbial fuel cell technology\[J\].Bulletin of the Korean Chemical Society,2008,29(11),2 189-2 194.
[24]
\[18\]Tender,L.M.,S.A.Gray,E.Groveman,et al.The first demonstration of a microbial fuel cell as a viable power supply:Powering a meteorological buoy\[J\].Journal of Power Sources,2008,179(2):571-575.
[25]
\[19\]Zhang,F.,L.Tian,Z.He.Powering a wireless temperature sensor using sediment microbial fuel cells with vertical arrangement of electrodes\[J\].Journal of Power Sources,2011,196(22):9 568-9 573.
\[21\]Donovan,C.,A.Dewan,H.Peng.Power management system for a 2.5W remote sensor powered by a sediment microbial fuel cell\[J\].Journal of Power Sources,2011,196(3):1 171-1 177.
[28]
\[22\]Zhang,T.,S.M.Gannon,K.P.Nevin,et al.Stimulating the anaerobic degradation of aromatic hydrocarbons in contaminated sediments by providing an electrode as the electron acceptor\[J\].Environmental Microbiology,2010,12(4):1 011-1 020.
[29]
\[23\]Huang,D.Y.,S.G.Zhou,Q.Chen,et al.Enhanced anaerobic degradation of organic pollutants in a soil microbial fuel cell\[J\].Chemical Engineering Journal,2011,172(2-3):647-653.
[30]
\[24\]Mohan,S.V.,G.Mohanakrishna,P.Chiranjeevi.Sustainable power generation from floating macrophytes based ecological microenvironment through embedded fuel cells along with simultaneous wastewater treatment\[J\].Bioresource Technology,2011,102(14):7 036-7 042.
[31]
\[25\]De Schamphelaire,L.,L.Van den Bossche,H.S.Dang,et al.Microbial fuel cells generating electricity from rhizodeposits of rice plants\[J\].Environmental Science & Technology,2008,42(8):3 053-3 058.
[32]
\[26\]Yan,Z.S.,H.Y.Guo,T.S.Song,et al.Tolerance and remedial function of rooted submersed macrophyte Vallisneria spiralis to phenanthrene in freshwater sediments\[J\].Ecological Engineering,2011,37(2):123-127.
[33]
\[27\]Deng,H.,Z.Chen,F.Zhao.Energy from plants and microorganisms:Progress in plantmicrobial fuel cells\[J\].ChemSusChem,2012,5(6):1 006-1 011.
[34]
\[28\]Chang,I.S.,H.Moon,J.K.Jang,et al.Improvement of a microbial fuel cell performance as a BOD sensor using respiratory inhibitors\[J\].Biosensors and Bioelectronics,2005,20(9):1 856-1 859.
[35]
\[29\]Stein,N.E.,H.V.M.Hamelers,C.N.J.Buisman.Stabilizing the baseline current of a microbial fuel cellbased biosensor through overpotential control under nontoxic conditions\[J\].Bioelectrochemistry,2010,78(1):87-91.
[36]
\[30\]Karube,I.,T.Matsunaga,S.Mitsuda.Microbial electrode BOD sensors\[J\].Biotechnology and Bioengineering,1977,19(10):1 535-1 547.