Artículo

Abrevaya, X.C.; Sacco, N.J.; Bonetto, M.C.; Hilding-Ohlsson, A.; Cortón, E. "Analytical applications of microbial fuel cells. Part I: Biochemical oxygen demand" (2015) Biosensors and Bioelectronics. 63:580-590
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Abstract:

Microbial fuel cells (MFCs) are bio-electrochemical devices, where usually the anode (but sometimes the cathode, or both) contains microorganisms able to generate and sustain an electrochemical gradient which is used typically to generate electrical power. In the more studied set-up, the anode contains heterotrophic bacteria in anaerobic conditions, capable to oxidize organic molecules releasing protons and electrons, as well as other by-products. Released protons could reach the cathode (through a membrane or not) whereas electrons travel across an external circuit originating an easily measurable direct current flow. MFCs have been proposed fundamentally as electric power producing devices or more recently as hydrogen producing devices. Here we will review the still incipient development of analytical uses of MFCs or related devices or set-ups, in the light of a non-restrictive MFC definition, as promising tools to asset water quality or other measurable parameters. An introduction to biological based analytical methods, including bioassays and biosensors, as well as MFCs design and operating principles, will also be included. Besides, the use of MFCs as biochemical oxygen demand sensors (perhaps the main analytical application of MFCs) is discussed. In a companion review (Part 2), other new analytical applications are reviewed used for toxicity sensors, metabolic sensors, life detectors, and other proposed applications. © 2014 Elsevier B.V.

Registro:

Documento: Artículo
Título:Analytical applications of microbial fuel cells. Part I: Biochemical oxygen demand
Autor:Abrevaya, X.C.; Sacco, N.J.; Bonetto, M.C.; Hilding-Ohlsson, A.; Cortón, E.
Filiación:Instituto de Astronomía y Física del Espacio (IAFE), UBA-CONICET, Ciudad Universitaria, Buenos Aires, Argentina
Laboratory of Biosensors and Bioanalysis (LABB), Ciudad Universitaria, Departamento de Química Biológica e IQUIBICEN-CONICET, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Argentina
Pabellon 2, Ciudad Autónoma de Buenos Aires 1428, Argentina
Palabras clave:Bioassay; Bioelectrochemisty; Biosensor; BOD; MFC; Review; Bioassay; Biochemical oxygen demand; Biosensors; Cathodes; Fuel cells; Protons; Reviews; Water quality; Bioassay; Biochemical oxygen demand; Biosensors; Cathodes; Electrodes; Fuel cells; Oxygen; Protons; Reviews; Water quality; Analytical applications; Biochemical oxygen demand sensor; Bioelectrochemisty; Electrochemical gradients; Heterotrophic bacterias; Measurable parameters; MFC; Microbial fuel cells (MFCs); Microbial fuel cells; Microbial fuel cells; bioassay; biochemical oxygen demand; biological activity; biosensor; cytoarchitecture; electric activity; electric potential; electrochemistry; electrode; electron; electron transport; equipment design; Escherichia coli; Geobacter; microbial fuel cell; nonhuman; reproducibility; review; sediment; Shewanella; sludge; validation process; waste water; waste water management; water quality; anaerobic bacterium; analytical parameters; bacterial strain; biodegradation; chemical reaction kinetics; conceptual framework; electricity; electrochemical analysis; immobilized cell; macromolecule; microbial activity; microbial metabolism; Pseudomonas putida; Review; Saccharomyces cerevisiae; toxicity testing; biochemical oxygen demand; bioenergy; device failure analysis; devices; metabolism; microbiology; procedures; Bacteria (microorganisms); organic compound; proton; oxygen; Bioelectric Energy Sources; Biological Assay; Biological Oxygen Demand Analysis; Equipment Design; Equipment Failure Analysis; Oxygen; Toxicity Tests
Año:2015
Volumen:63
Página de inicio:580
Página de fin:590
DOI: http://dx.doi.org/10.1016/j.bios.2014.04.034
Título revista:Biosensors and Bioelectronics
Título revista abreviado:Biosens. Bioelectron.
ISSN:09565663
CODEN:BBIOE
CAS:proton, 12408-02-5, 12586-59-3; oxygen, 7782-44-7; Oxygen
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09565663_v63_n_p580_Abrevaya

Referencias:

  • Allen, R.M., Bennetto, H.P., (1993) J. Appl. Biochem. Biotechnol., 39, pp. 27-40
  • Bennetto, H.P., Microbial fuel cells (1984) Life Chemistry Reports, pp. 363-453. , Harwood Academic Publishers, London and New York, A.M. Michelson, J.V. Bannister (Eds.)
  • Bennetto, H.P., Delaney, G.R., Rason, J.R., Roller, S.D., Stirling, J.L., Thurston, C.F., (1985) Biotechnol. Lett., 7, pp. 699-704
  • Bonetto, M.C., Sacco, N.J., Hilding-Ohlsson, A., Cortón, E., (2011) Talanta, 85, pp. 455-462
  • Brutinel, E.D., Gralnick, J.A., (2012) Appl. Microbiol. Biotechnol., 93, pp. 41-48
  • Bullen, R.A., Arnot, T.C., Lakeman, J.B., Walsh, F.C., (2006) Biosens. Bioelectron., 21, pp. 2015-2045
  • Catterall, K., Morris, K., Gladman, C., Zhao, H., Pasco, N., John, R., (2001) Talanta, 55, pp. 1187-1194
  • Chang, I.S., Jang, J.K., Gil, G.C., Kim, M., Kim, H.J., Cho, B.W., Kim, B.H., (2004) Biosens. Bioelectron., 19, pp. 607-613
  • Chang, I.S., Moon, H., Bretschger, O., Jang, J.K., Park, H.I., Nealson, K.H., Kim, B.H., (2006) J. Microbiol. Biotechnol., 16, pp. 163-177
  • Chang, I.S., Moon, H., Jang, J.K., Kim, B.H., (2005) Biosens. Bioelectron., 20, pp. 1856-1859
  • Chaudhuri, S.K., Lovley, D.R., (2003) Nat. Biotechnol., 21, pp. 1229-1232
  • Chiappini, S.A., Kormes, D.J., Bonetto, M.C., Sacco, N., Cortón, E., (2010) Sens. Actuators B Chem., 148, pp. 103-109
  • Criddle, W.J., Hansen, N.R.S., Dylan, J., (1995) Analyst, 120, pp. 1639-1640
  • Davis, F., Higson, S.P.J., (2007) Biosens. Bioelectron., 22, pp. 1224-1235
  • Davis, J.B., Yarbrough, H.F., (1962) Science, 137, pp. 615-616
  • Di Lorenzo, M., Curtis, T.P., Head, I.M., Scott, K., (2009) Water Res., 43, pp. 3145-3154
  • Du, Z., Li, H., Gu, T., (2007) Biotechnol. Adv., 25, pp. 464-482
  • Duffus, J.H., Nordberg, M., Templeton, D.M., (2007) Pure Appl. Chem., 79, pp. 1153-1344
  • (1995), ISO, International Standard ISO 10712:1995(E); (2007), ISO,. International Standard ISO 11348-1/3:2007(E); (1997) Compendium of chemical terminology, , IUPAC, Blackwell Scientific Publications, Oxford, (The "Gold Book"), A.D. McNaught, A. Wilkinson (Eds.)
  • Jang, J.K., Pham, T.H., Chang, I.S., Kang, K.H., Moon, H., Cho, K.S., Kim, B.H., (2004) Process Biochem., 39, pp. 1007-1012
  • Jiang, X.C., Hu, J.S., Fitzgerald, L.A., Biffinger, J.C., Xie, P., Ringeisen, B.R., Lieber, C.M., (2010) Proc. Natl. Acad. Sci. USA, 107, pp. 16806-16810
  • Jones, T.P., Jones, A.W., Williams, P.M., (1977) Proceedings of the 7th International Conference on Alcohol, Drugs and Traffic Safety, pp. 259-266. , Melbourne, Australia
  • Kang, K.H., Jang, J.K., Pham, T.H., Moon, H., Chang, I.S., Kim, B.H., (2003) Biotechnol. Lett., 25, pp. 1357-1361
  • Karube, I., Matsunaga, T., Mitsuda, S., Suzuki, S., (1977) Biotechnol. Bioeng., 19, pp. 1535-1547
  • Kim, B.H., Chang, I.S., Gil, G.C., Park, H.S., Kim, H.J., (2003) Biotechnol. Lett., 25, pp. 541-545
  • Kim, B.H., Chang, I.S., Moon, H., Microbial fuel cell-type biochemical oxygen demand sensor (2006) Encyclopedia of Sensors, 10, pp. 1-12. , American Scientific Publishers, California, USA
  • Kim, M., Youn, S.M., Shin, S.H., Jang, J.G., Han, S.H., Hyun, M.S., Gadd, G.M., Kim, H.J., (2003) J. Environ. Monit., 5, pp. 640-643
  • Liu, H., Logan, B.E., (2004) Environ. Sci. Technol., 38, pp. 4040-4046
  • Liu, H., Ramnarayanan, R., Logan, B.E., (2004) Environ. Sci. Technol., 38, pp. 2281-2285
  • Liu, J., Mattiasson, B., (2002) Water Res., 36, pp. 3786-3802
  • Liu, L., Zhang, S., Xing, L., Zhao, H., Dong, S., (2012) Talanta, 93, pp. 314-319
  • Logan, B.E., (2008) Microbial Fuel Cells, , Wiley, New York
  • Logan, B.E., Hamelers, B., Rozendal, R., Schröder, U., Keller, J., Freguia, S., Aelterman, P., Rabaey, K., (2006) Environ. Sci. Technol., 40, pp. 5181-5192
  • Lovley, D.R., (2011) Environ. Microbiol. Rep., 3, pp. 27-35
  • Marsili, E., Baron, D.B., Shikhare, I.D., Coursolle, D., Gralnick, J.A., Bond, D.R., (2008) Proc. Natl. Acad. Sci. USA, 105, pp. 3968-3973
  • Min, B., Logan, B.E., (2004) Environ. Sci. Technol., 38, pp. 5809-5814
  • Modin, O., Wilen, B.M., (2012) Water Res., 46, pp. 6113-6120
  • Moon, H., Chang, I.S., Jang, J.K., Kim, K.S., Lee, J., Lovitt, R.W., Kim, B.H., (2005) J. Microbiol. Biotechnol., 15, pp. 192-196
  • Moon, H., Chang, I.S., Kang, K.H., Jang, J.K., Kim, B.H., (2004) Biotechnol. Lett., 26, pp. 1717-1721
  • (2014), http://www.hq.nasa.gov/office/pao/History/SP-4203/ch7-4.htm, NASA webpage. (accessed April); Okada, T., Xie, G., Gorseth, O., Kjelstrup, S., Nakamura, N., Arimura, T., (1998) Electrochim. Acta, 43, pp. 3741-3747
  • Osman, M.H., Shah, A.A., Walsh, F.C., (2010) Biosens. Bioelectron., 26, pp. 953-963
  • Potter, M.C., (1911) Proc. Phys. Soc. London, Sect. B, 84, pp. 260-276
  • Peixoto, L., Min, B., Martins, G., Brito, A.G., Kroff, P., Parpot, P., Angelidaki, I., Nogueira, R., (2011) Bioelectrochemistry, 81, pp. 99-103
  • Rabaey, K., Verstraete, W., (2005) Trends Biotechnol., 23, pp. 291-298
  • Reimers, C.E., Tender, L.M., Fertig, S., Wang, W., (2001) Environ. Sci. Technol., 35, pp. 192-195
  • Richter, H., McCarthy, K., Nevin, K., Johnson, J., Rotello, V., Lovley, D., (2008) Langmuir, 24, pp. 4376-4379
  • Stams, A.J., de Bok, F.A., Plugge, C., van Eekert, M.H., Dolfing, J., Schraa, G., (2006) Environ. Microbiol., 8, pp. 371-382
  • Su, L., Jia, W., Hou, C., Lei, Y., (2011) Biosens. Bioelectron., 26, pp. 1788-1799
  • Trosok, S.P., Driscoll, B.T., Luong, J.H.T., (2001) Appl. Microbiol. Biotechnol., 56, pp. 550-554
  • Wieckowski, A., Norskov, J., (2010) Fuel Cell Science: Theory, Fundamentals, and Biocatalysis, , (Eds.), Wiley, New York
  • Yoshida, N., Yano, K., Morita, T., McNiven, S.J., Nakamura, H., Karube, I., (2000) Analyst, 125, pp. 2280-2284
  • Zhang, Y., Angelidaki, I., (2011) Biotechnol. Bioeng., 108, pp. 2339-2347

Citas:

---------- APA ----------
Abrevaya, X.C., Sacco, N.J., Bonetto, M.C., Hilding-Ohlsson, A. & Cortón, E. (2015) . Analytical applications of microbial fuel cells. Part I: Biochemical oxygen demand. Biosensors and Bioelectronics, 63, 580-590.
http://dx.doi.org/10.1016/j.bios.2014.04.034
---------- CHICAGO ----------
Abrevaya, X.C., Sacco, N.J., Bonetto, M.C., Hilding-Ohlsson, A., Cortón, E. "Analytical applications of microbial fuel cells. Part I: Biochemical oxygen demand" . Biosensors and Bioelectronics 63 (2015) : 580-590.
http://dx.doi.org/10.1016/j.bios.2014.04.034
---------- MLA ----------
Abrevaya, X.C., Sacco, N.J., Bonetto, M.C., Hilding-Ohlsson, A., Cortón, E. "Analytical applications of microbial fuel cells. Part I: Biochemical oxygen demand" . Biosensors and Bioelectronics, vol. 63, 2015, pp. 580-590.
http://dx.doi.org/10.1016/j.bios.2014.04.034
---------- VANCOUVER ----------
Abrevaya, X.C., Sacco, N.J., Bonetto, M.C., Hilding-Ohlsson, A., Cortón, E. Analytical applications of microbial fuel cells. Part I: Biochemical oxygen demand. Biosens. Bioelectron. 2015;63:580-590.
http://dx.doi.org/10.1016/j.bios.2014.04.034