Monitoring the Quality of Ozone towards the Prevention of Further Global Warming

This article discusses the issue of Ozone depletion in global warming, factors causing Ozone depletion and the design of monitoring system. In developing countries like Malaysia, the rapid growth of industrial sectors does not only bring income to the nation, but also causes pollution in various for...

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Main Authors: Abas, M. Amir, Azim, M.Khusairy, Fadzil, M.Helmi, M.Dahlui, UniKL BMI
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Language:English
Published: IEEE 2013
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Online Access:http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=6130155
http://ir.unikl.edu.my/jspui/handle/123456789/5145
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spelling my.unikl.ir-51452014-02-27T03:00:16Z Monitoring the Quality of Ozone towards the Prevention of Further Global Warming Abas, M. Amir Azim, M.Khusairy Fadzil, M.Helmi M.Dahlui UniKL BMI Ozone Layer Monitoring Global Warming Measurement Ultraviolet This article discusses the issue of Ozone depletion in global warming, factors causing Ozone depletion and the design of monitoring system. In developing countries like Malaysia, the rapid growth of industrial sectors does not only bring income to the nation, but also causes pollution in various forms. It is well known that air pollution has significant contribution towards global warming through Ozone depletion, whereby the emission of toxic gas from industries such as CFC would slowly thin the Ozone layer. Therefore, apart from taking efforts to prevent or reduce air pollution, the monitoring of factors known to deplete ozone should also be undertaken. In view of this, an instrument that could monitor the quality of Ozone on daily basis was designed. The instrument comprises of two main blocks; the data logger and Graphic User Interface (GUI). The data logger uses 16-Bit Microcontroller as the main control board housing data logger algorithm, Solar Tracker algorithm and data storage block. Three sensors were used in the data logger to measure the temperature, humidity and ultraviolet rays. The system had been tested at the field to capture data in two different conditions; at the industrial and high attitude areas. The measurement was carried out for 2100 hours to monitor the reliability, durability and accuracy of the instrument. 2013-12-05T03:58:33Z 2013-12-05T03:58:33Z 2011-11 10.1109/ICA.2011.6130155 http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=6130155 http://ir.unikl.edu.my/jspui/handle/123456789/5145 en IEEE
institution Universiti Kuala Lumpur
building UniKL Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kuala Lumpur
content_source UniKL Institutional Repository
url_provider http://ir.unikl.edu.my/
language English
topic Ozone Layer
Monitoring
Global Warming
Measurement
Ultraviolet
spellingShingle Ozone Layer
Monitoring
Global Warming
Measurement
Ultraviolet
Abas, M. Amir
Azim, M.Khusairy
Fadzil, M.Helmi
M.Dahlui
UniKL BMI
Monitoring the Quality of Ozone towards the Prevention of Further Global Warming
description This article discusses the issue of Ozone depletion in global warming, factors causing Ozone depletion and the design of monitoring system. In developing countries like Malaysia, the rapid growth of industrial sectors does not only bring income to the nation, but also causes pollution in various forms. It is well known that air pollution has significant contribution towards global warming through Ozone depletion, whereby the emission of toxic gas from industries such as CFC would slowly thin the Ozone layer. Therefore, apart from taking efforts to prevent or reduce air pollution, the monitoring of factors known to deplete ozone should also be undertaken. In view of this, an instrument that could monitor the quality of Ozone on daily basis was designed. The instrument comprises of two main blocks; the data logger and Graphic User Interface (GUI). The data logger uses 16-Bit Microcontroller as the main control board housing data logger algorithm, Solar Tracker algorithm and data storage block. Three sensors were used in the data logger to measure the temperature, humidity and ultraviolet rays. The system had been tested at the field to capture data in two different conditions; at the industrial and high attitude areas. The measurement was carried out for 2100 hours to monitor the reliability, durability and accuracy of the instrument.
format
author Abas, M. Amir
Azim, M.Khusairy
Fadzil, M.Helmi
M.Dahlui
UniKL BMI
author_facet Abas, M. Amir
Azim, M.Khusairy
Fadzil, M.Helmi
M.Dahlui
UniKL BMI
author_sort Abas, M. Amir
title Monitoring the Quality of Ozone towards the Prevention of Further Global Warming
title_short Monitoring the Quality of Ozone towards the Prevention of Further Global Warming
title_full Monitoring the Quality of Ozone towards the Prevention of Further Global Warming
title_fullStr Monitoring the Quality of Ozone towards the Prevention of Further Global Warming
title_full_unstemmed Monitoring the Quality of Ozone towards the Prevention of Further Global Warming
title_sort monitoring the quality of ozone towards the prevention of further global warming
publisher IEEE
publishDate 2013
url http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=6130155
http://ir.unikl.edu.my/jspui/handle/123456789/5145
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score 13.214268