Difference between revisions of "Team:Hong Kong-CUHK/Modeling"
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<p>The fuel cell in the cathode and anode is counter-flow and it shows that the hydrogen-rich anode gas is entering from the left. The electrochemical reaction in the cell are give below:</p> | <p>The fuel cell in the cathode and anode is counter-flow and it shows that the hydrogen-rich anode gas is entering from the left. The electrochemical reaction in the cell are give below:</p> | ||
<p>Anode: H<sub>2</sub> + 2 e<sup>−</sup> → 2 H<sup>+</sup></p> | <p>Anode: H<sub>2</sub> + 2 e<sup>−</sup> → 2 H<sup>+</sup></p> | ||
− | <p>Cathode: 1/2 O<sub>2</sub> + 2 e<sup>−</sup> → | + | <p>Cathode: 1/2 O<sub>2</sub> + 2 e<sup>−</sup> → O<sup>2-</sup> </p> |
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<p>c<sub>t</sub> the total concentration of species (mol m<sup>-3</sup>)</p> | <p>c<sub>t</sub> the total concentration of species (mol m<sup>-3</sup>)</p> | ||
<p>c<sub>h2,ref</sub> and c<sub>h+,ref</sub> is the reference concentrations (mol m<sup>-3</sup>)</p> | <p>c<sub>h2,ref</sub> and c<sub>h+,ref</sub> is the reference concentrations (mol m<sup>-3</sup>)</p> | ||
− | <p>F is Faraday’s constant (C | + | <p>F is Faraday’s constant (C mol<sup>-1</sup>)</p> |
− | <p>R is the gas constant (J/ | + | <p>R is the gas constant (J mol<sup>-1</sup> K<sup>-1</sup>))</p> |
<p>T is the temperature (K)</p> | <p>T is the temperature (K)</p> | ||
<p>η is the overvoltage (V)</p> | <p>η is the overvoltage (V)</p> | ||
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<img src="https://static.igem.org/mediawiki/2015/2/24/CUHK_Modeling_Formula_v%28cell%29.jpg"> | <img src="https://static.igem.org/mediawiki/2015/2/24/CUHK_Modeling_Formula_v%28cell%29.jpg"> | ||
− | <p>where V<sub>pol</sub> is the polarization.</p><p>In this model, & | + | <p>where V<sub>pol</sub> is the polarization.</p><p>In this model, Δ φ<sub>eq,c</sub> = 1 V and Δ φ<sub>eq,a</sub> = 0 V ,and the fuel cell over the range 0.2 ≤ V<sub>cell</sub> ≤ 0.95 V is simulated by using V<sub>pol</sub> in the range 0.05 V through 0.8 V as the parameter for the parametric solver.</p> |
<p>Results: The following figure shows the hydrogen mole fraction in the anode at a cell polarization of 0.5 V</p> | <p>Results: The following figure shows the hydrogen mole fraction in the anode at a cell polarization of 0.5 V</p> |
Revision as of 16:13, 18 September 2015