Affiliation:
1. Universiti Kuala Lumpur
2. Universiti Tun Hussain Onn Malaysia
Abstract
The historical development of fire suppression technology evolved in the 1930s since the application of Halons as a fire extinguishing agent. The fire may cause tremendous losses to organizations. It affects the chain of businesses and the stability of the economic growth of a country. The key issues of greenhouse effects and safety and health as well contributes to the sudden change of the technology of fire extinguishing systems. The establishment of the Montreal Protocol and Kyoto Protocols controls the producers to develop, supply and use of environmentally hazardous gasses worldwide. Hence, promote global sustainable for upcoming generations. This paper is highlighting the reasons gas type fire extinguishing agents extensively used substituting conventional methods against fire. The fundamental equations of Ozone Depleting Potential and Global Warming Potential were properly discussed to show how severe these gasses exposed to the environment. The effectiveness of these gases as a clean agent in extinguishing the fire may convince prospect users to carry out the decision of changes. Potential extinguishing agents will be deliberated to investigate their needs as new fire suppression agents. It will be then to be suggested and recommended for further studies.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference21 articles.
1. R. Walls and P. Zweig, Towards sustainable slums : understanding fire, Adv. Technol. Sustain. Syst. (2017) 93–98.
2. W. M. Choy and N. K. Fong, An Introduction to Clean Agents Heptafluoropropane, Int. J. Eng. Performance-Based Fire Codes, 5 (2003)181–184.
3. R. S. D. B. O. A.Askari, Mohad Bakri Bin Ishak, Normala Halimoon , Mohamad Roslan, Mohamad Kasim, A. Ghadimzadeh, Fire safety model applying on workplaces of Fire and rescue departments in Kuala Lumpur city Malaysia, Int. J. Adv. Sci. Tech. Res., 7(2015), 185–197.
4. H. Liu et al., Critical assessment on operating water droplet sizes for fire sprinkler and water mist systems, J. Build. Eng., (2020).
5. H. Zhao and J. S. Liu, The Feasibility Study of Extinguishing Oil Tank Fire by Using Compressed Air Foam System, Procedia Engineering, 135 (2016) 61–66.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献