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Development Of Magneto Electrolysis For Hydrogen Generator System

Nurhidayah, Hamdan (2009) Development Of Magneto Electrolysis For Hydrogen Generator System. Project Report. UTeM, Melaka, Malaysia. (Submitted)

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Abstract

This Final Year Project is about the development of magneto electrolysis for hydrogen generator system. Magneto electrolysis for hydrogen generator system is an enlargement of hydro-fuel technology which is as an alternative way of cost saving for petrol used. It consist the design of hydrogen generator system built by water electrolysis. The objective of this project is to find the optimum parameters in magneto electrolysis process and to study the rate of hydrogen gas generated using the proposed system. Today, the energy source for nearly all daily applications is fossil fuel, principally petrol. The supply of petrol is limited and its price is increasing. Greenhouse gas and air pollutants are emitted when petrol is used. Hydrogen generator which is built by water electrolysis that produces the hydrogen gas could solve this problem by hybridization with petrol. A proposed system consist of tank-type water electrolysis apparatus with series electrodes arrangement and wherein imposed magnetic fields enhance electrolyte solution circulation further enhanced in apparatus operation by use of immersed electrets providing partitioning structure between separated hydrogen bubbles-producing and oxygen bubbles-producing regions in the solution. Various design parameters and the fabrication of the reactor is discussed briefly in the thesis. Experimental results of hydrogen production rate and the comparison are also discussed.

Item Type: Final Year Project (Project Report)
Uncontrolled Keywords: Hydrogen as fuel, Electrolysis of water, Water -- Electrolysis
Subjects: T Technology > T Technology (General)
T Technology > TP Chemical technology
Divisions: Library > Final Year Project > FKM
Depositing User: Users 136 not found.
Date Deposited: 25 Jun 2012 07:56
Last Modified: 28 May 2015 02:36
URI: http://digitalcollection.utem.edu.my/id/eprint/3631

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