用户名: 密码: 验证码:
Microbial fuel cells for biosensor applications
详细信息    查看全文
  • 作者:Huijia Yang ; Minghua Zhou ; Mengmeng Liu ; Weilu Yang ; Tingyue Gu
  • 关键词:Anaerobic digestion ; Biocorrosion ; Biofilms ; Biosensors ; Microbial fuel cell ; Sensor ; Wastewater treatment
  • 刊名:Biotechnology Letters
  • 出版年:2015
  • 出版时间:December 2015
  • 年:2015
  • 卷:37
  • 期:12
  • 页码:2357-2364
  • 全文大小:890 KB
  • 参考文献:Abrevaya XC, Sacco NJ, Bonetto MC, Hilding-Ohlsson A, Corton E (2015a) Analytical applications of microbial fuel cells. Part II: toxicity, microbial activity and quantification, single analyte detection and other uses. Biosens Bioelectron 63:591鈥?01CrossRef PubMed
    Abrevaya XC, Sacco NJ, Bonetto MC, Hilding-Ohlsson A, Corton E (2015b) Analytical applications of microbial fuel cells. Part I: biochemical oxygen demand. Biosens Bioelectron 63:580鈥?90CrossRef PubMed
    Bruijs MCM, Venhuis LP, Jenner HA, Licina GJ, Daniels D (2001) Biocide optimization using an on-line biofilm monitor. Power Plant Chem 3:400鈥?05
    Chang IS, Jang JK, Gil GC, Kim M, Kim HJ, Cho BW, Kim BH (2004) Continuous determination of biochemical oxygen demand using microbial fuel cell type biosensor. Biosens Bioelectron 19:607鈥?13CrossRef PubMed
    Chen S, Liu G, Zhang R, Qin B, Luo Y (2012) Development of the microbial electrolysis desalination and chemical-production cell for desalination as well as acid and alkali productions. Environ Sci Technol 46:2467鈥?472CrossRef PubMed
    Choi SH, Gu MB (2003) Toxicity biomonitoring of degradation byproducts using freeze-dried recombinant bioluminescent bacteria. Anal Chim Acta 481:229鈥?38CrossRef
    Davila D, Esquivel JP, Sabate N, Mas J (2011) Silicon-based microfabricated microbial fuel cell toxicity sensor. Biosens Bioelectron 26:2426鈥?430CrossRef PubMed
    Debabov VG (2008) Electricity from microorganisms. Microbiology 77:123鈥?31CrossRef
    Dewan A, Ay SU, Karim MN, Beyenal H (2014) Alternative power sources for remote sensors: a review. J Power Sources 245:129鈥?43CrossRef
    Feng Y, Barr W, Harper WF Jr (2013) Neural network processing of microbial fuel cell signals for the identification of chemicals present in water. J Environ Manag 120:84鈥?2CrossRef
    Flemming HC (1994) Microbial deterioration of materials - fundamentals economical and technical overview. Mater Corros 45:5鈥?CrossRef
    Flemming HC, Schaule G (1994) Microbial deterioration of materials - biofilm and biofouling: biofouling. Mater Corros 45:29鈥?9CrossRef
    George RP, Muraleedharan P, Dayal RK, Khatak HS (2006) Techniques for biofilm monitoring. Corros Rev 24:123鈥?50CrossRef
    Gil G-C, Chang I-S, Kim BH, Kim M, Jang J-K, Park HS, Kim HJ (2003) Operational parameters affecting the performance of a mediator-less microbial fuel cell. Biosens Bioelectron 18:327鈥?34CrossRef PubMed
    Gu T (2012) Methods and devices for the detection of biofilms. World Intellectual Property Organization: Patent WO2012/149487
    Jacobson GA (2007) Corrosion at Prudhoe Bay鈥攁 lesson on the line. Mater Perform 46:26鈥?4
    Janknecht P, Melo LF (2003) Online biofilm monitoring. Rev Environ Sci Biotechnol 2:269鈥?83CrossRef
    Jiang D, Li B, Jia W, Lei Y (2010) Effect of inoculum types on bacterial adhesion and power production in microbial fuel cells. Appl Biochem Biotechnol 160:182鈥?96CrossRef PubMed
    Jiang Y, Liang P, Zhang CY, Bian YH, Yang XF, Huang X, Girguis PR (2015) Enhancing the response of microbial fuel cell based toxicity sensors to Cu (II) with the applying of flow-through electrodes and controlled anode potentials. Biores Technol 190:367鈥?72CrossRef
    Jouanneau S, Recoules L, Durand MJ, Boukabache A, Picot V, Primault Y, Lakel A, Sengelin M, Barillon B, Thouand G (2014) Methods for assessing biochemical oxygen demand (BOD): a review. Water Res 49:62鈥?2CrossRef PubMed
    Kang KH, Jang JK, Pham TH, Moon HS, Chang IS, Kim BH (2003) A microbial fuel cell with improved cathode reaction as a low biochemical oxygen demand sensor. Biotechnol Lett 25:1357鈥?361CrossRef PubMed
    Kaur A, Kim JR, Michie I, Dinsdale RM, Guwy AJ, Premier GC (2013) Microbial fuel cell type biosensor for specific volatile fatty acids using acclimated bacterial communities. Biosens Bioelectron 47:50鈥?5CrossRef PubMed
    Kim T, Han JI (2013) Fast detection and quantification of Escherichia coli using the base principle of the microbial fuel cell. J Environ Manag 130:267鈥?75CrossRef
    Kim M, Park HS, Jin GJ, Cho WH, Lee DK, Hyun MS, Choi CH, Kim HJ (2006) A novel combined biomonitoring system for BOD measurement and toxicity detection using microbial fuel cells. IEEE Sens 1247鈥?248
    Kim M, Hyun SM, Gadd GM, Kim HJ (2007) A novel biomonitoring system using microbial fuel cells. J Environ Monitor 9:1323鈥?328CrossRef
    Lei Y, Chen W, Mulchandani A (2006) Microbial biosensors. Anal Chim Acta 568:200鈥?10CrossRef PubMed
    Li WW, Yu HQ, He Z (2014) Towards sustainable wastewater treatment by using microbial fuel cells-centered technologies. Energy Environ Sci 7:911鈥?24CrossRef
    Liu J, Mattiasson B (2002) Microbial BOD sensors for wastewater analysis. Water Res 36:3786鈥?802CrossRef PubMed
    Liu Z, Liu J, Zhang S, Xing XH, Su Z (2011) Microbial fuel cell based biosensor for in situ monitoring of anaerobic digestion process. Bioresour Technol 102:10221鈥?0229CrossRef PubMed
    Liu Q, Zhou Y, Chen SL, Wang ZJ, Hou HQ, Zhao F (2015) Cellulose-derived nitrogen and phosphorus dual-doped carbon as high performance oxygen reduction catalyst in microbial fuel cell. J Power Sources 273:1189鈥?193CrossRef
    Logan BE (2009) Exoelectrogenic bacteria that power microbial fuel cells. Nat Rev Microbiol 7:375鈥?81CrossRef PubMed
    Lorenzoa MD, Curtis TP, Head IM, Scott K (2009) A single-chamber microbial fuel cell as a biosensor for wastewaters. Water Res 43:3145鈥?154CrossRef
    Min B, Angelidaki I (2008) Innovative microbial fuel cell for electricity production from anaerobic reactors. J Power Sources 180:641鈥?47CrossRef
    Modin O, Wil茅n BM (2012) A novel bioelectrochemical BOD sensor operating with voltage input. Water Res 46:6113鈥?120CrossRef PubMed
    Moon HS, Chang IS, Kang KH, Jang JK, Kim BH (2004) Improving the dynamic response of a mediator-less microbial fuel cell as -biochemical oxygen demand (BOD) sensor. Biotechnol Lett 26:1717鈥?721CrossRef PubMed
    Moon HS, Chang IS, Jang JK, Kim KS, Lee J, Lovitt RW, Kim BH (2005) On-line monitoring of low biochemical oxygen demand through continuous operation of a mediator-less microbial fuel cell. J Microbiol Biotechn 15:192鈥?96
    Oh S, Min B, Logan BE (2004) Cathode performance as a factor in electricity generation in microbial fuel cells. Environ Sci Technol 38:4900鈥?904CrossRef PubMed
    Patchett RA, Kelly AF, Kroll RG (1988) Use of a microbial fuel cell for the rapid enumeration of bacteria. Appl Microbiol Biotechnol 28:26鈥?1CrossRef
    Peixoto L, Min B, Martins G, Brito AG, Kroff P, Parpot P, Angelidaki I, Nogueira R (2011) In situ microbial fuel cell-based biosensor for organic carbon. Bioelectrochemistry 81:99鈥?03CrossRef PubMed
    Quek SB, Cheng L, Cord-Ruwisch R (2015) In-line deoxygenation for organic carbon detections in seawater using a marine microbial fuel cell-biosensor. Bioresour Technol 182:34鈥?0CrossRef PubMed
    Rabaey K, Lissens G, Siciliano SD, Verstraete W (2003) A microbial fuel cell capable of converting glucose to electricity at high rate and efficiency. Biotechnol Lett 25:1531鈥?535CrossRef PubMed
    Ren H, Pyo SJ, Lee JI, Park YJ, Gittleson FS, Leung FCC, Kim JB, Taylor AD, Lee HS, Chae JS (2015) A high power density miniaturized microbial fuel cell having carbon nanotube anodes. J Power Sources 273:823鈥?30CrossRef
    Rice EW, Baird RB, Eaton AD, Clesceri LS (2012) Standard methods for the examination of water and wastewater, 22nd edn. American Public Health Association/American Water Works Association/Water Environment Federation, Washington DC
    Sara RM, Maria JLDA, Dami脿 B (2006) Biosensors as useful tools for environmental analysis and monitoring. Anal Bioanal Chem 386:1025鈥?041CrossRef
    Stein NE, Hamelers HV, Buisman CN (2010) Stabilizing the baseline current of a microbial fuel cell-based biosensor through overpotential control under non-toxic conditions. Bioelectrochemistry 78:87鈥?1CrossRef PubMed
    Stein NE, Hamelers HMV, van Straten G, Keesman KJ (2012a) On-line detection of toxic components using a microbial fuel cell-based biosensor. J Process Contr 22:1755鈥?761CrossRef
    Stein NE, Hamelers HV, Straten GV, Keesman KJ (2012b) Effect of toxic components on microbial fuel cell-polarization curves and estimation of the type of toxic inhibition. Biosensors 2:255鈥?68PubMedCentral CrossRef PubMed
    Sun JZ, Kingori GP, Si RW, Zhai DD, Liao ZH, Sun DZ, Zheng T, Yong YC (2015) Microbial fuel cell-based biosensors for environmental monitoring: a review. Water Sci Technol 71(6):801鈥?09PubMed
    Tront JM, Fortner JD, Plotze M, Hughes JB, Puzrin AM (2008) Microbial fuel cell biosensor for in situ assessment of microbial activity. Biosens Bioelectron 24:586鈥?90CrossRef PubMed
    Ur铆aa N, S谩nchez D, Masb R, S谩nchez O, Munozb FX, Mas J (2012) Effect of the cathode/anode ratio and the choice of cathode catalyst on the performance of microbial fuel cell transducers for the determination of microbial activity. Sensor Actuat B-Chem 170:88鈥?4CrossRef
    Vishwanathan AS, Rao G, Siva Sankara Sai S (2013) A novel minimally invasive method for monitoring oxygen in microbial fuel cells. Biotechnol Lett 35:553鈥?58CrossRef PubMed
    Wang X, Gao N, Zhou Q (2013) Concentration responses of toxicity sensor with Shewanella oneidensis MR-1 growing in bioelectrochemical systems. Biosens Bioelectron 43:264鈥?67CrossRef PubMed
    Xu D, Gu T (2014) Carbon source starvation triggered more aggressive corrosion against carbon steel by the Desulfovibrio vulgaris biofilm. Int Biodeterior Biodegrad 91:74鈥?1CrossRef
    Xu D, Li Y, Song F, Gu T (2013) Laboratory investigation of microbiologically influenced corrosion of C1018 carbon steel by nitrate reducing bacterium bacillus licheniformis. Corros Sci 77:385鈥?90CrossRef
    Zhang Y, Angelidaki I (2011) Submersible microbial fuel cell sensor for monitoring microbial activity and BOD in groundwater: focusing on impact of anodic biofilm on sensor applicability. Biotechnol Bioeng 108:2339鈥?347CrossRef PubMed
    Zhang Y, Angelidaki I (2012) A simple and rapid method for monitoring dissolved oxygen in water with a submersible microbial fuel cell (SBMFC). Biosens Bioelectron 38:189鈥?94CrossRef PubMed
    Zhang CY, Liang P, Jiang Y, Huang X (2015) Enhanced power generation of microbial fuel cell using manganese dioxide-coated anode in flow-through mode. J Power Sour 273:580鈥?83CrossRef
    Zhou M, Wang H, Hassett DJ, Gu T (2013) Recent advances in microbial fuel cells (MFCs) and microbial electrolysis cells (MECs) for wastewater treatment, bioenergy and bioproducts. J Chem Technol Biotechnol 88:508鈥?18CrossRef
  • 作者单位:Huijia Yang (1)
    Minghua Zhou (1)
    Mengmeng Liu (1)
    Weilu Yang (1)
    Tingyue Gu (2)

    1. Key Laboratory of Pollution Process and Environmental Criteria, Ministry of Education, Tianjin Key Laboratory of Urban Ecology Environmental Remediation and Pollution Control, Research Center for Sustainable Energy & Environmental Technologies, College of Environmental Science and Engineering, Nankai University, Tianjin, 300071, China
    2. Department of Chemical and Biomolecular Engineering, Ohio University, Athens, OH, 45701, USA
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Microbiology
    Biotechnology
    Applied Microbiology
    Biochemistry
  • 出版者:Springer Netherlands
  • ISSN:1573-6776
文摘
Microbial fuel cells (MFCs) face major hurdles for real-world applications as power generators with the exception of powering small sensor devices. Despite tremendous improvements made in the last two decades, MFCs are still too expensive to build and operate and their power output is still too small. In view of this, in recently years, intensive researches have been carried out to expand the applications into other areas such as acid and alkali production, bioremediation of aquatic sediments, desalination and biosensors. Unlike power applications, MFC sensors have the immediate prospect to be practical. This review covers the latest developments in various proposed biosensor applications using MFCs including monitoring microbial activity, testing biochemical oxygen demand, detection of toxicants and detection of microbial biofilms that cause biocorrosion. Keywords Anaerobic digestion Biocorrosion Biofilms Biosensors Microbial fuel cell Sensor Wastewater treatment

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700