Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Sulfide as an alternative electron donor to glucose for power generation in mediator-less microbial fuel cell
The objective of this study was to investigate the power generation in a dual-chamber microbial fuel cell (MFC). As one of the effective parameters, glucose concentration was studied in the range of 100-1000 mg/L. At the optimum concentration of 500 mg/L of glucose, maximum power generation was 186 mW/m 2 . As an alternative, sulfide was used as an electron donor and maximum power output was 401 mW/m 2 at the concentration of 100 mg/L; which was more than twice of power produced using glucose. Moreover, sulfide removal efficiencies of 70%, 66%, 60%, and 64% were obtained when initial sulfide concentrations of 10, 20, 80, and 100 mg/L were used, respectively.
Sulfide as an alternative electron donor to glucose for power generation in mediator-less microbial fuel cell
The objective of this study was to investigate the power generation in a dual-chamber microbial fuel cell (MFC). As one of the effective parameters, glucose concentration was studied in the range of 100-1000 mg/L. At the optimum concentration of 500 mg/L of glucose, maximum power generation was 186 mW/m 2 . As an alternative, sulfide was used as an electron donor and maximum power output was 401 mW/m 2 at the concentration of 100 mg/L; which was more than twice of power produced using glucose. Moreover, sulfide removal efficiencies of 70%, 66%, 60%, and 64% were obtained when initial sulfide concentrations of 10, 20, 80, and 100 mg/L were used, respectively.
Sulfide as an alternative electron donor to glucose for power generation in mediator-less microbial fuel cell
Fatemi, Sakine (Autor:in) / Ghoreyshi, Ali A / Rahimnejad, Mostafa / Darzi, Ghasem Najafpour / Pant, Deepak
2017
Aufsatz (Zeitschrift)
Englisch
USA , Recht , Zeitschrift , Datenverarbeitung
Taylor & Francis Verlag | 2017
|Progress in research for non-mediator microbial fuel cell
British Library Online Contents | 2005
|Behavior of copper in membrane-less sediment microbial fuel cell
American Institute of Physics | 2017
|British Library Online Contents | 2003