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Electrohydrogenesis

Electrohydrogenesis or biocatalyzed electrolysis is the name given to a process for generating hydrogen gas from organic matter being decomposed by bacteria.[1] This process uses a modified fuel cell to contain the organic matter and water. A small amount, 0.2–0.8 V[2] of electricity is used, the original article reports an overall energy efficiency of 288% can be achieved (this is computed relative to the amount of electricity used, waste heat lowers the overall efficiency). This work was reported by Cheng and Logan.[3]

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References edit

  1. ^ . Archived from the original on 2016-12-21. Retrieved 2008-08-31.
  2. ^ Cheng, S; Logan, BE (November 2007). "Sustainable and efficient biohydrogen production via electrohydrogenesis". Proc. Natl. Acad. Sci. U.S.A. 104 (47): 18871–3. Bibcode:2007PNAS..10418871C. doi:10.1073/pnas.0706379104. PMC 2141869. PMID 18000052.
  3. ^ Cheng, Shaoan; Logan, Bruce E. (2007-11-20). "Sustainable and efficient biohydrogen production via electrohydrogenesis". Proceedings of the National Academy of Sciences. 104 (47): 18871–18873. Bibcode:2007PNAS..10418871C. doi:10.1073/pnas.0706379104. PMC 2141869. PMID 18000052.
  4. ^ Shaoan Cheng; Defeng Xing; Douglas F. Call; Bruce E. Logan (March 26, 2009). "Direct Biological Conversion of Electrical Current into Methane by Electromethanogenesis". Environ. Sci. Technol. 43 (10): 3953–8. Bibcode:2009EnST...43.3953C. doi:10.1021/es803531g. PMID 19544913.

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electrohydrogenesis, biocatalyzed, electrolysis, name, given, process, generating, hydrogen, from, organic, matter, being, decomposed, bacteria, this, process, uses, modified, fuel, cell, contain, organic, matter, water, small, amount, electricity, used, origi. Electrohydrogenesis or biocatalyzed electrolysis is the name given to a process for generating hydrogen gas from organic matter being decomposed by bacteria 1 This process uses a modified fuel cell to contain the organic matter and water A small amount 0 2 0 8 V 2 of electricity is used the original article reports an overall energy efficiency of 288 can be achieved this is computed relative to the amount of electricity used waste heat lowers the overall efficiency This work was reported by Cheng and Logan 3 See also editBiohydrogen Electrochemical reduction of carbon dioxide Electromethanogenesis 4 Fermentative hydrogen production Microbial fuel cellReferences edit Hydrogen production through biocatalyzed electrolysis Archived from the original on 2016 12 21 Retrieved 2008 08 31 Cheng S Logan BE November 2007 Sustainable and efficient biohydrogen production via electrohydrogenesis Proc Natl Acad Sci U S A 104 47 18871 3 Bibcode 2007PNAS 10418871C doi 10 1073 pnas 0706379104 PMC 2141869 PMID 18000052 Cheng Shaoan Logan Bruce E 2007 11 20 Sustainable and efficient biohydrogen production via electrohydrogenesis Proceedings of the National Academy of Sciences 104 47 18871 18873 Bibcode 2007PNAS 10418871C doi 10 1073 pnas 0706379104 PMC 2141869 PMID 18000052 Shaoan Cheng Defeng Xing Douglas F Call Bruce E Logan March 26 2009 Direct Biological Conversion of Electrical Current into Methane by Electromethanogenesis Environ Sci Technol 43 10 3953 8 Bibcode 2009EnST 43 3953C doi 10 1021 es803531g PMID 19544913 External links editBiocatalyzed electrolysis permanent dead link nbsp This biology article is a stub You can help Wikipedia by expanding it vte Retrieved from https en wikipedia org w index php title Electrohydrogenesis amp oldid 1173842390, wikipedia, wiki, book, books, library,

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