Difference between revisions of "Team:Hong Kong-CUHK/Modeling"
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<p>In a microbial fuel cell (MFC), chemical energy is transformed into electrical energy through a cascade of electrochemical reaction. The mutated nitrogenase in <i>Azotobacter</i> will produce hydrogen gas by the side reaction and break down into hydrogen ion due to the existence of hydrogenase. Alternatively, the electrons can be transferred to the electrode via the oxidized mediator molecules. By using magnetosome, the distance between the bacteria and electrode can be decreased, thus reduces the diffusion distance of the oxidized mediator. This approach would increase the current density and efficiency of electricity generation in MFC. </p> | <p>In a microbial fuel cell (MFC), chemical energy is transformed into electrical energy through a cascade of electrochemical reaction. The mutated nitrogenase in <i>Azotobacter</i> will produce hydrogen gas by the side reaction and break down into hydrogen ion due to the existence of hydrogenase. Alternatively, the electrons can be transferred to the electrode via the oxidized mediator molecules. By using magnetosome, the distance between the bacteria and electrode can be decreased, thus reduces the diffusion distance of the oxidized mediator. This approach would increase the current density and efficiency of electricity generation in MFC. </p> | ||
− | <p>In this model, current density distribution in hydrogen-oxygen fuel cell was studied. It included the fuel coupling between the mass balances at the anode and cathode | + | <p>In this model, current density distribution in hydrogen-oxygen fuel cell was studied. It included the fuel coupling between the mass balances at the anode and cathode; the momentum balances in the gas channel; the gas flow in the porous electrodes; the balance of the ionic current carried by the mediator; and an electronic current balance.</p> |
<img src="https://static.igem.org/mediawiki/2015/9/93/CUHK_Modeling_Figure_3.jpg"> | <img src="https://static.igem.org/mediawiki/2015/9/93/CUHK_Modeling_Figure_3.jpg"> |
Revision as of 16:43, 18 September 2015