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Production of electrically-conductive nanoscale filaments by sulfate-reducing bacteria in the microbial fuel cell.
Eaktasang, Numfon; Kang, Christina S; Lim, Heejun; Kwean, Oh Sung; Cho, Suyeon; Kim, Yohan; Kim, Han S.
Afiliação
  • Eaktasang N; Environmental Engineering, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701 Republic of Korea.
  • Kang CS; Environmental Engineering, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701 Republic of Korea.
  • Lim H; Environmental Engineering, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701 Republic of Korea.
  • Kwean OS; Environmental Engineering, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701 Republic of Korea.
  • Cho S; Environmental Engineering, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701 Republic of Korea.
  • Kim Y; Environmental Engineering, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701 Republic of Korea.
  • Kim HS; Environmental Engineering, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701 Republic of Korea. Electronic address: hankim@konkuk.ac.kr.
Bioresour Technol ; 210: 61-7, 2016 Jun.
Article em En | MEDLINE | ID: mdl-26818576
ABSTRACT
This study reports that the obligate anaerobic microorganism, Desulfovibrio desulfuricans, a predominant sulfate-reducing bacterium (SRB) in soils and sediments, can produce nanoscale bacterial appendages for extracellular electron transfer. These nanofilaments were electrically-conductive (5.81S·m(-1)) and allowed SRBs to directly colonize the surface of insoluble or solid electron acceptors. Thus, the direct extracellular electron transfer to the insoluble electrode in the microbial fuel cell (MFC) was possible without inorganic electron-shuttling mediators. The production of nanofilaments was stimulated when only insoluble electron acceptors were available for cellular respiration. These results suggest that when availability of a soluble electron acceptor for SRBs (SO4(2-)) is limited, D. desulfuricans initiates the production of conductive nanofilaments as an alternative strategy to transfer electrons to insoluble electron acceptors. The findings of this study contribute to understanding of the role of SRBs in the biotransformation of various substances in soils and sediments and in the MFC.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Sulfatos / Fontes de Energia Bioelétrica / Desulfovibrio desulfuricans / Condutividade Elétrica / Nanopartículas Idioma: En Revista: Bioresour Technol Assunto da revista: ENGENHARIA BIOMEDICA Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Sulfatos / Fontes de Energia Bioelétrica / Desulfovibrio desulfuricans / Condutividade Elétrica / Nanopartículas Idioma: En Revista: Bioresour Technol Assunto da revista: ENGENHARIA BIOMEDICA Ano de publicação: 2016 Tipo de documento: Article
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