Friday, April 16, 2021

Calculation of the theoretical heat generated in the Proton Exchange Membrane fuel cell & Electrical potential Difference

Calculation of the theoretical heat generated in the fuel cell.

Basic reaction at fuel cell electrodes-

                 At the anode:       H2 →  2H+ + 2e-                                                                                                   

                 At the cathode:    ½ O+ 2H+ + 2e- →  H2O                                            

                 Overall:               H2 + ½ O2 →  H2O                                                                      

The overall reaction is same as the hydrogen combustion. Since combustion is exothermic process so heat will be released -

                                  H2 + ½ O2 →  H2O + heat

Standard enthalpy of reaction can be calculated by difference of heat of formation of products and reactant.

       ΔH= (hf)H2O(l)- (hf)H2- (hf)0.5O2

Heat of formation of liquid water is -

(hf)H2O = -286 kJmol-1 (at 25°C)

Heat of formation of reactant gases 

(hf)H2= (hf)0.5O2 =0 kJ/mol

So,                                                  ΔH= -286-0-0= -286 kJ/mol.

-ve sign indicates that reaction is exothermic.

But if products H2O is not cooled enough to become liquid, and it remains as vapour then the enthalpy of reaction reduced by enthalpy of vaporisation of water ie. 44 kJ/mol

     ΔH= (hf)H2O(g)- (hf)H2- (hf)0.5O2

              = -286+44 -0-0= -242 kJ/mol.

All the generated energy cannot be converted into electricity due the reaction entropy. The portion of the reaction enthalpy (or hydrogen's higher heating value) that can be converted to electricity in a fuel cell corresponds to Gibbs free energy and is given by the following equation:

                                                       DG = DH- TDS    .

So Gibbs free energy in the liquid water conversion at 250 C

                                                      DG= -286-(25+273)*(-0.1663)= -237 kJ/mol.

Heat produced theoretically in the reaction is = -237-(-286)= 49 kJ/mol

And Gibbs free energy in the vapour water conversion at 250 C

                                                     DG= -242- (25+273)*(-0.0444) = -229 kJ/mol.

Heat produced theoretically in the reaction is = -229- (-242)= 13kJ/mol.

Electrical work:                           W el= nFE,       

 n= no of electrons per mole. E= electric potential

Maximum amount of electrical energy generated in a fuel cell corresponds to Gibbs free energy, DG:                                              

Wel = - DG =nFE

So theoretical electrical potential   E= = - DG/ nF

                                                            =- (-237*1000)/ (2*96500) = 1.23 V 


Fore more details on fuel cell, please commment, I can share more details of fuel cell. 

Sunday, April 11, 2021

School project for Kids- Solar powered fan in a Cap

 

Aim- To make familiar with solar panel and its electrical output by running a small DC fan with the solar panel.

Components required-

1.       Solar panel (6V, 200mA)

2.       Diode (1N4007)

3.       Small DC Fan (5V, 200mA)

Theory-

The solar panel generates electrical power when it is placed under the sun light. The output depends on the solar panel dimensions and solar radiation available to solar panel. The diode is unidirectional device. It conducts the current in one direction and blocks in the opposite directions. Due to this property diode is used to stop the reverse power flow toward the solar panel. The fan will work as load and will take electrical power generated from the solar panel to blow the air.

Steps-

1.      Take the solar panel and put in the opposite way.

2.    Find the + (plus) and – (minus) symbol on back side.

3.       To the +side connect the black side of diode.

4.       To the silver side of diode connect the fan + terminal (red wire).

5.       Connect the –ve terminal (black wire) of Fan to the –ve side of solar panel.

6.       Now take the solar panel in the sun light and put front side up. The fan will start running.

7.       Now just put solar panel in different sun lights intensity and see the variation in the fan speed.

Connection Diagram-



Follwing type product can be made using above-

sample design.

More innovative design can be made. Your ideas may please  be shared in the comment section. 



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