Novel lead acid battery desulphators

Lead-acid battery has been around for more than a century and it is now commonly used in our daily life. More than 85 percent of the lead-acid batteries reached their premature life due to a problem called “sulphation”. Sulphation can be reversed and the battery’s life can be prolonged by using a pr...

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Main Author: Maung, Aung Tun.
Other Authors: Yu Siu Fung
Format: Final Year Project
Language:English
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10356/17582
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-175822023-07-07T15:46:36Z Novel lead acid battery desulphators Maung, Aung Tun. Yu Siu Fung School of Electrical and Electronic Engineering Photonics Research Centre DRNTU::Engineering::Electrical and electronic engineering::Electric apparatus and materials Lead-acid battery has been around for more than a century and it is now commonly used in our daily life. More than 85 percent of the lead-acid batteries reached their premature life due to a problem called “sulphation”. Sulphation can be reversed and the battery’s life can be prolonged by using a process called “desulphation”. Desulphation can be achieved by making use of an electronic device called desulphator. This project aims to develop a battery desulphator which adopts the US patented “pulsing technique” which injects a pulse into the battery to bring the sulphate back to the electrolyte and effectively extend the battery’s lifespan. Studies were done on the formation of sulphur in the battery and the working principle of pulsing technique. Based on the studies, a few desulphator circuits were built based on by Alastair Couper’s desulphator design. The effectiveness of desulphation depends on the output pulse of the desulphator circuit. The built desulphators were tested and the critical factors that affect the output pulse of the desulphator are addressed. Various experiments were done to adjust these factors of the output pulse. From the results obtained, different ways of adjusting the critical factors were analyzed and discussed. Based on the analysis done, in the future, the circuit can be modified and experiments can be done to see the improvement of the new circuit which might take weeks or months time. Bachelor of Engineering 2009-06-10T07:37:29Z 2009-06-10T07:37:29Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/17582 en Nanyang Technological University 77 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering::Electric apparatus and materials
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Electric apparatus and materials
Maung, Aung Tun.
Novel lead acid battery desulphators
description Lead-acid battery has been around for more than a century and it is now commonly used in our daily life. More than 85 percent of the lead-acid batteries reached their premature life due to a problem called “sulphation”. Sulphation can be reversed and the battery’s life can be prolonged by using a process called “desulphation”. Desulphation can be achieved by making use of an electronic device called desulphator. This project aims to develop a battery desulphator which adopts the US patented “pulsing technique” which injects a pulse into the battery to bring the sulphate back to the electrolyte and effectively extend the battery’s lifespan. Studies were done on the formation of sulphur in the battery and the working principle of pulsing technique. Based on the studies, a few desulphator circuits were built based on by Alastair Couper’s desulphator design. The effectiveness of desulphation depends on the output pulse of the desulphator circuit. The built desulphators were tested and the critical factors that affect the output pulse of the desulphator are addressed. Various experiments were done to adjust these factors of the output pulse. From the results obtained, different ways of adjusting the critical factors were analyzed and discussed. Based on the analysis done, in the future, the circuit can be modified and experiments can be done to see the improvement of the new circuit which might take weeks or months time.
author2 Yu Siu Fung
author_facet Yu Siu Fung
Maung, Aung Tun.
format Final Year Project
author Maung, Aung Tun.
author_sort Maung, Aung Tun.
title Novel lead acid battery desulphators
title_short Novel lead acid battery desulphators
title_full Novel lead acid battery desulphators
title_fullStr Novel lead acid battery desulphators
title_full_unstemmed Novel lead acid battery desulphators
title_sort novel lead acid battery desulphators
publishDate 2009
url http://hdl.handle.net/10356/17582
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