Structure design and performance comparison of large-scale marine sediment microbial fuel cells in lab and real sea as power source to drive monitoring instruments for long-term work
Tóm tắt
Từ khóa
Tài liệu tham khảo
Logan BE, Hamelers B, Rozendal R, Schröder U, Keller J, Freguia S, Aelterman P, Verstraete W, Rabaey K (2006) Microbial fuel cells: methodology and technology. Environ Sci Technol 40(17):5181–5192
Nastro RA, Falcucci G, Minutillo M, Jannelli E (2017) Microbial fuel cells in solid waste valorization: trends and applications. Model Trends Solid Hazard Waste Manag:159–171
Reimers CE, Tender LM, Fertig S, Wang W (2001) Harvesting energy from the marine sediment−water interface. Environ Sci Technol 35(1):192–195
Bond DR, Holmes DE, Tender LM, Lovley DR (2002) Electrode-reducing microorganisms that harvest energy from marine sediments. Science 295(5554):483–485
Lowy DA, Tender LM (2008) Harvesting energy from the marine sediment–water interface: III. Kinetic activity of quinone-and antimony-based anode materials. J Power Sources 185(1):70–75
Fu YB, Liu ZH, Su G, Zai XR, Ying M, Yu J (2016) Modified carbon anode by MWCNTs/PANI used in marine sediment microbial fuel cell and its electrochemical performance. Fuel Cells 16(3):377–383
Li WW, Yu HQ (2015) Stimulating sediment bioremediation with benthic microbial fuel cells. Biotechnol Adv 33(1):1–12
Zhao Q, Li R, Ji M, Ren ZJ (2016) Organic content influences sediment microbial fuel cell performance and community structure. Bioresour Technol 220:549–556
Fu Y, Xu Q, Zai X, Liu Y, Lu Z (2014) Low electrical potential anode modified with Fe/ferric oxide and its application in marine benthic microbial fuel cell with higher voltage and power output. Appl Surf Sci 289:472–477
Wei J, Liang P, Huang X (2011) Recent progress in electrodes for microbial fuel cells. Bioresour Technol 102(20):9335–9344
Fu Y, Zhao Z, Liu J, Li K, Xu Q, Zhang S (2011) Sulfonated polyaniline/vanadate composite as anode material and its electrochemical property in microbial fuel cells on ocean floor. Science China Chem 54(5):844–849
Santoro C, Artyushkova K, Gajda I, Babanova S, Serov A, Atanassov P, Greenman J, Colombo A, Trasatti S, Ieropoulos I, Cristiani P (2015) Cathode materials for ceramic based microbial fuel cells (MFCs). Int J Hydrog Energy 40(42):14706–14715
Santoro C, Soavi F, Serov A, Arbizzani C, Atanassov P (2016) Self-powered supercapacitive microbial fuel cell: the ultimate way of boosting and harvesting power. Biosens Bioelectron 78:229–235
Santoro C, Serov A, Stariha L, Kodali M, Gordon J, Babanova S, Bretschger O, Artyushkova K, Atanassov P (2016) Iron based catalysts from novel low-cost organic precursors for enhanced oxygen reduction reaction in neutral media microbial fuel cells. Energy Environ Sci 9(7):2346–2353
Santoro C, Serov A, Villarrubia CWN, Stariha S, Babanova S, Artyushkova K, Schuler AJ, Atanassov P (2015) High catalytic activity and pollutants resistivity using Fe-AAPyr cathode catalyst for microbial fuel cell application. Sci Rep 5:16596
Zhang F, Tian L, He Z (2011) Powering a wireless temperature sensor using sediment microbial fuel cells with vertical arrangement of electrodes. J Power Sources 196(22):9568–9573
Tender LM, Gray SA, Groveman E, Lowy DA, Kauffman P, Melhado J, Tycef RC, Flynnf D, Petrecca R, Dobarro J (2008) The first demonstration of a microbial fuel cell as a viable power supply: powering a meteorological buoy. J Power Sources 179(2):571–575
Song TS, Yan ZS, Zhao ZW, Jiang HL (2011) Construction and operation of freshwater sediment microbial fuel cell for electricity generation. Bioprocess Biosyst Eng 34(5):621–627
Schrader PS, Reimers CE, Girguis P, Delaney J, Doolan C, Wolf M, Green D (2016) Independent benthic microbial fuel cells powering sensors and acoustic communications with the MARS underwater observatory. J Atmos Ocean Technol 33(3):607–617
He Z, Shao H, Angenent LT (2007) Increased power production from a sediment microbial fuel cell with a rotating cathode. Biosens Bioelectron 22(12):3252–3255
Jannelli N, Nastro RA, Cigolotti V, Minutillo M, Falcucci G (2017) Low pH, high salinity: too much for microbial fuel cells? Appl Energy 192:543–550
Jørgensen BB, Boetius A (2007) Feast and famine—microbial life in the deep-sea bed. Nat Rev Microbiol 5(10):770
Yanagawa K, Morono Y, De Beer D, Haeckel M, Sunamura M, Futagami T, Hoshino T, Terada T, Nakamura K, Urabe T, Rehder G, Boetius A, Inagaki F (2013) Metabolically active microbial communities in marine sediment under high-CO2 and low-pH extremes. ISME J 7(3):555
Sherafatmand M, Ng HY (2015) Using sediment microbial fuel cells (SMFCs) for bioremediation of polycyclic aromatic hydrocarbons (PAHs). Bioresour Technol 195:122–130
Xia C, Xu M, Liu J, Guo J, Yang Y (2015) Sediment microbial fuel cell prefers to degrade organic chemicals with higher polarity. Bioresour Technol 190:420–423
Donovan C, Dewan A, Peng H, Heo D, Beyenal H (2011) Power management system for a 2.5 W remote sensor powered by a sediment microbial fuel cell. J Power Sources 196(3):1171–1177
Khaled F, Ondel O, Allard B (2016) Microbial fuel cells as power supply of a low-power temperature sensor. J Power Sources 306:354–360
Scott K, Cotlarciuc I, Head I, Katuri KP, Hall D, Lakeman JB, Browning D (2008) Fuel cell power generation from marine sediments: investigation of cathode materials. J Chem Technol Biotechnol 83(9):1244–1254
Fu Y, Yù J, Zhang Y, Meng Y (2014) Graphite coated with manganese oxide/multiwall carbon nanotubes composites as anodes in marine benthic microbial fuel cells. Appl Surf Sci 317:84–89
Ming Y, ZhaoHui L, YangGuo Z, YuBin F (2015) Impact of exogenous additives on the performance of marine benthonic microbial fuel cells. Oceanologia et Limnologia Sinica/Hai Yang Yu Hu Zhao 46(3):489–496