Search
NEWS

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and Microfluidics, Energy, ChemRxiv

By A Mystery Man Writer

A microbial fuel cell with a pure-culture Geobacter sulfurreducens electroactive biofilm was used for performance optimization by making rapid changes to experimental parameters in microchannels while monitoring their effect using linear sweep voltammetry. A systematic investigation of polarization behavior and evaluation of system resistivity provided important figures of merit and mechanistic insights on the effects of flow rates, concentrations, and temperature after reaching maturity. After individual parameters were optimized, a synergistic effect was observed by applying optimal parameters together, resulting in improved current and maximum power densities, compared to stable values at unoptimized conditions. Continued acclimation for just two days under these conditions resulted in further improvements to anode area-normalized current and power maxima (10.49±0.23 A m-2 and 2.48±0.27 W m-2), which are among the highest reported in the literature for a microfluidic MFC. In keeping with other accepted normalization protocol using the area separating anode and cathode chambers, the outputs were recalculated as 64 A m-2 and 15 W m-2.

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Frontiers Progress and Prospects of Bioelectrochemical Systems: Electron Transfer and Its Applications in the Microbial Metabolism

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Energies, Free Full-Text

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Energies, Free Full-Text

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Microfluidic microbial fuel cells: from membrane to membrane free - ScienceDirect

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Energies, Free Full-Text

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Is microbial fuel cell technology ready? An economic answer towards industrial commercialization - ScienceDirect

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Microbial fuel cell: a paradigm shifts in wastewater treatment - ScienceDirect

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Microbial electrolysis cell - Wikipedia

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Review on mechanisms and recovery procedures for reversible performance losses in polymer electrolyte membrane fuel cells - ScienceDirect

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Review on mechanisms and recovery procedures for reversible performance losses in polymer electrolyte membrane fuel cells - ScienceDirect

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

PDF) Parametric study for optimization of sediment-type microbial fuel cell

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Review on mechanisms and recovery procedures for reversible performance losses in polymer electrolyte membrane fuel cells - ScienceDirect

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Coatings, Free Full-Text

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Energies, Free Full-Text

Optimization of Microbial a Fuel Cell with Linear Sweep Voltammetry and  Microfluidics, Energy, ChemRxiv

Sustainability, Free Full-Text