Design system to product a Green Hydrogen using Solar Electrolysis Process
Description
PROJECT AIM:
This project aims to fabricate an electrolysis process system powered by a solar electricity cell to produce green hydrogen.
The water electrolysis process using renewable power is the most well-established technique for manufacturing green hydrogen has been proven in two methods the Polymer electrolyte membrane electrolysis PEM and Alkaline Water Electrolysis. Each method has advantages and limitations.
This project will focus on the Alkaline Water Electrolysis method of the process using the renewable energy of the solar power and will check the efficiency of the solar cell required to power the electrolysis process system and calculate all the requirements measured starting from solar power needed, sunlight period and solar radiation level, solar panel and battery output efficiency, solar panel size, solar panels weigh, water volume, type of water ( amount of hydrogen and oxygen will generate form the prosses. Then will simulate the result values in a small-scale model to prove the concept and calculate the design parameters for industrial application.
PROJECT focused area:
To fabricate Alkaline Water Electrolysis process system powered by a solar electricity cell.
To check the efficiency of the solar electricity cell
To calculate the design parameters for industrial application
Solar energy required.
Number of panel and batters.
ALL Multi parameters have to be calculated and tested to anchor the quality of the system.
Water volume and quality needed for the electrolysis process system
- Green hydrogen storge.
The efficiency and amount of electricity cell needed.
- fuel cell, turns chemical energy into electrical current (DC) and than to AC to run the electricity in Medium size commercial building.
The structure of the report need to be in 6 chapters Experimental Setup , Methodology, calculation and parameters Results and Discussions, Conclusions of the Experimental and Recommendations/Future Work
- All formulas and equations need to be clear and simple
All the calculations will be in the area, and all data will be attached.
I will use the wastewater quality attached
- All calculation needs to be the original scall of the attached data
Finally, convert the data to a prototype scale to be built in a small lab with all flow diagrams and calculations. Including all material list required
Unformatted Attachment Preview
PROJECT AIM:
This project aims to fabricate an electrolysis process system powered by a solar electricity cell to
produce green hydrogen.
The water electrolysis process using renewable power is the most well-established technique for
manufacturing green hydrogen has been proven in two methods the Polymer electrolyte
membrane electrolysis PEM and Alkaline Water Electrolysis. Each method has advantages and
limitations.
This project will focus on the Alkaline Water Electrolysis method of the process using the
renewable energy of the solar power and will check the efficiency of the solar cell required to
power the electrolysis process system and calculate all the requirements measured starting from
solar power needed, sunlight period and solar radiation level, solar panel and battery output
efficiency, solar panel size, solar panels weigh, water volume, type of water ( amount of hydrogen
and oxygen will generate form the prosses. Then will simulate the result values in a small-scale
model to prove the concept and calculate the design parameters for industrial application.
PROJECT focused area:
o fabricate Alkaline Water Electrolysis process system powered by a solar electricity
cell.
o check the efficiency of the solar electricity cell
o calculate the design parameters for industrial application
olar energy required.
umber of panel and batters.
LL Multi parameters have to be calculated and tested to anchor the quality of the
system.
ater volume and quality needed for the electrolysis process system
reen hydrogen storge.
he efficiency and amount of electricity cell needed.
¦uel cell, turns chemical energy into electrical current (DC) and than to AC to run the
electricity in Medium size commercial building.
1.
The structure of the report need to be in 6 chapters Experimental Setup ,
Methodology, calculation and parameters Results and Discussions,
Conclusions of the Experimental and Recommendations/Future Work
2.
3.
4.
5.
6.
7.
All formulas and equations need to be clear and simple
All the calculations will be in the area, and all data will be attached.
I will use the wastewater quality attached
All calculation needs to be the original scall of the attached data
Finally, convert the data to a prototype scale to be built in a small lab with all flow
diagrams and calculations. Including all material list required
4000 words limits
8.
Reference CCE Harvard
Plan of the experimental setup:
The Production of Green Hydrogen using the Solar Electrolysis Process will be in 4 phases:
–
–
–
–
Phase 1 will be the system power source from the solar panel, DS wiring, Solare charge controller
(optional), and solar battery.
12v solar batteri and 30 watts solar panel
Phase 2 will be the electrolysis process, including water bottle, PVC tube, Nacl, Ni pleats, water,
container, gas flow meter (optional), and gas storage (as the Hydrogen gas is very flammable,
need to get more instructions in the allow way to store the gas or we can use the gas directly
without storage).
1000 ml of water will be use + 10 gram KOH
Phase 3 will utilize the green hydrogen by using full cell, wiring, PVC tube, LED Lamp, voltameter
(optional), and waste water tank.
–
Phase 4 will be analyses and gathering the data :
? The solar charge controller can measure the solar charge produced from 1 solar panel
in the area.
? The electrolysis process will be able to calculate the amount of gas production, how
long the process will take and what is the water consumption.
? From all data experimentally gathered, will be able to determine how many solar
panels, batteries, water, and full cells are required to power the NU belding with
green energy.
Diagram:
Purchase answer to see full
attachment
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