Design and analysis of HHO electrolyzer / Azrul Bakhri Abdullah

The project is concentrated specifically on the oxyhydrogen gas (HHO) production and factors which influenced the production. The HHO production is done by using electrolyzer part or in detail explanation is electrolysis process of water as electrolyte, stainless steel as electrode and potassium hyd...

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Main Author: Abdullah, Azrul Bakhri
Format: Thesis
Language:English
Published: 2010
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/37930/1/37930.pdf
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spelling my-uitm-ir.379302020-11-27T08:42:08Z Design and analysis of HHO electrolyzer / Azrul Bakhri Abdullah 2010 Abdullah, Azrul Bakhri Machine design and drawing The project is concentrated specifically on the oxyhydrogen gas (HHO) production and factors which influenced the production. The HHO production is done by using electrolyzer part or in detail explanation is electrolysis process of water as electrolyte, stainless steel as electrode and potassium hydroxide as additive. The production analysis is using custom-made analyzer which designed base on Faraday's Law of electrolysis. The production analysis involves voltage, current and temperature as well as volume flow rate and power for its result. The proper specification of each factor is important to ensure its efficiency. Structural analysis is involving the analysis of the principal of Faraday's Law, electrochemical concept and also the power requirement of the electrolyzer part. The analysis is fully conducted semi-electronically or in other word by using the manual installment and some electronic compartment for result reading which equipped with custom-made analyzer. The analysis of the analyzer part is concentrated on the analysis of the critical factors of the electrolysis base on Faraday's Law and electrical principle. 2010 Thesis https://ir.uitm.edu.my/id/eprint/37930/ https://ir.uitm.edu.my/id/eprint/37930/1/37930.pdf text en public degree Universiti Teknologi MARA Faculty of Mechanical Engineering
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
topic Machine design and drawing
spellingShingle Machine design and drawing
Abdullah, Azrul Bakhri
Design and analysis of HHO electrolyzer / Azrul Bakhri Abdullah
description The project is concentrated specifically on the oxyhydrogen gas (HHO) production and factors which influenced the production. The HHO production is done by using electrolyzer part or in detail explanation is electrolysis process of water as electrolyte, stainless steel as electrode and potassium hydroxide as additive. The production analysis is using custom-made analyzer which designed base on Faraday's Law of electrolysis. The production analysis involves voltage, current and temperature as well as volume flow rate and power for its result. The proper specification of each factor is important to ensure its efficiency. Structural analysis is involving the analysis of the principal of Faraday's Law, electrochemical concept and also the power requirement of the electrolyzer part. The analysis is fully conducted semi-electronically or in other word by using the manual installment and some electronic compartment for result reading which equipped with custom-made analyzer. The analysis of the analyzer part is concentrated on the analysis of the critical factors of the electrolysis base on Faraday's Law and electrical principle.
format Thesis
qualification_level Bachelor degree
author Abdullah, Azrul Bakhri
author_facet Abdullah, Azrul Bakhri
author_sort Abdullah, Azrul Bakhri
title Design and analysis of HHO electrolyzer / Azrul Bakhri Abdullah
title_short Design and analysis of HHO electrolyzer / Azrul Bakhri Abdullah
title_full Design and analysis of HHO electrolyzer / Azrul Bakhri Abdullah
title_fullStr Design and analysis of HHO electrolyzer / Azrul Bakhri Abdullah
title_full_unstemmed Design and analysis of HHO electrolyzer / Azrul Bakhri Abdullah
title_sort design and analysis of hho electrolyzer / azrul bakhri abdullah
granting_institution Universiti Teknologi MARA
granting_department Faculty of Mechanical Engineering
publishDate 2010
url https://ir.uitm.edu.my/id/eprint/37930/1/37930.pdf
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