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Effects of Magnetic Field on Fuel Consumption and Exhaust Emissions in Two-Stroke Engine
Author(s) -
Ali S. Faris,
Saadi K. AlNaseri,
Nather Jamal,
Raed Isse,
Mezher Abed,
Zainab Fouad,
Akeel Kazim,
Nihad Reheem,
Ali Chaloob,
Hazim Mohammad,
Hayder Jasim,
Jaafar Sadeq,
Alí Salim,
Pg Emeroylariffion Abas
Publication year - 2012
Publication title -
energy procedia
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.474
H-Index - 81
ISSN - 1876-6102
DOI - 10.1016/j.egypro.2012.05.044
Subject(s) - gasoline , environmental science , intensity (physics) , exhaust gas , automotive engineering , fuel efficiency , pollutant , magnet , waste management , chemistry , nuclear engineering , environmental engineering , physics , engineering , mechanical engineering , optics , organic chemistry
The energy of permanent magnets was used in this research for the treatment of vehicle fuel (Iraqi gasoline), to reducing consumption, as well as reducing the emission of certain pollutants rates. The experiments in current research comprise the using of permanent magnets with different intensity (2000, 4000, 6000, 9000) Gauss, which installed on the fuel line of the two-stroke engine, and study its impact on gasoline consumption, as well as exhaust gases. For the purpose of comparing the results necessitated the search for experiments without the use of magnets. The overall performance and exhaust emission tests showed a good result, where the rate of reduction in gasoline consumption ranges between (9-14) %, and the higher the value of a reduction in the rate of 14% was obtained using field intensity 6000 Gauss as well as the intensity 9000 Gauss. It was found that the percentages of exhaust gas components (CO, HC) were decreased by 30%, 40% respectively, but CO2 percentage increased up to 10%. Absorption Spectrum of infrared and ultraviolet radiation showed a change in physical and chemical properties in the structure of gasoline molecules under the influence of the magnetic field. Surface tension of gasoline exposed to different intensities of magnetic field was measured and compared with these without magnetization

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