This paper describes the active oxygenation performed by photosynthetic organisms in the cathode of a two-chamber Microbial Fuel Cell system. The algal biomass supplied dissolved oxygen to the cathodic oxygen reduction reaction (ORR) in a sustainable manner through the recirculation of the catholyte connected to separate photoreactors, which acted as lagoons. Aiming towards self-sustainable applications, it has been demonstrated that catholyte recirculation could be facilitated by the MFC stack itself when a dc impeller pump was periodically powered by the electricity generated from these same MFCs
© 2017 Elsevier B.V. The chlorophyte microalga Chlorella vulgaris has been exploited within bioindus...
The aim of this study was to quantitatively assess the net increase in microalgal biomass concentrat...
This work reports the use of the Microbial Fuel Cell (MFC) technology, in combination with an electr...
© 2014, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved. This pape...
Algae and photosynthetic bacteria may be integrated or associated with Microbial Fuel Cells MFCs in ...
One of the major limiting factors in the practical implementation of Microbial Fuel Cells is finding...
This paper describes the potential for algal biomass production in conjunction with wastewater treat...
Abstract MFCs comprise two half-cells; an anode and a cathode, which are necessary for the electrici...
Conventional microbial fuel cells (MFCs) consist of biological anodes and abiotic cathodes separated...
One major limiting factor for sediment microbial fuel cells (SMFC) is the low oxygen reduction rate ...
AbstractMicrobial fuel cells (MFCs) are energy transducers that convert organic matter directly into...
Microbial fuel cells (MFCs) are energy transducers that convert organic matter directly into electri...
The activities of mankind have seriously perturbed the worldwide carbon cycle. They resulted in an e...
An algae bioreactor (ABR) was externally connected to air-cathode microbial fuel cells (MFCs) to inc...
Microbial fuel cells (MFCs) produce electricity while reducing oxygen at the cathod
© 2017 Elsevier B.V. The chlorophyte microalga Chlorella vulgaris has been exploited within bioindus...
The aim of this study was to quantitatively assess the net increase in microalgal biomass concentrat...
This work reports the use of the Microbial Fuel Cell (MFC) technology, in combination with an electr...
© 2014, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved. This pape...
Algae and photosynthetic bacteria may be integrated or associated with Microbial Fuel Cells MFCs in ...
One of the major limiting factors in the practical implementation of Microbial Fuel Cells is finding...
This paper describes the potential for algal biomass production in conjunction with wastewater treat...
Abstract MFCs comprise two half-cells; an anode and a cathode, which are necessary for the electrici...
Conventional microbial fuel cells (MFCs) consist of biological anodes and abiotic cathodes separated...
One major limiting factor for sediment microbial fuel cells (SMFC) is the low oxygen reduction rate ...
AbstractMicrobial fuel cells (MFCs) are energy transducers that convert organic matter directly into...
Microbial fuel cells (MFCs) are energy transducers that convert organic matter directly into electri...
The activities of mankind have seriously perturbed the worldwide carbon cycle. They resulted in an e...
An algae bioreactor (ABR) was externally connected to air-cathode microbial fuel cells (MFCs) to inc...
Microbial fuel cells (MFCs) produce electricity while reducing oxygen at the cathod
© 2017 Elsevier B.V. The chlorophyte microalga Chlorella vulgaris has been exploited within bioindus...
The aim of this study was to quantitatively assess the net increase in microalgal biomass concentrat...
This work reports the use of the Microbial Fuel Cell (MFC) technology, in combination with an electr...