Technology of fuel consumption and emission reduction, and enhanced electricity generation using mid-infrared rays – A Laser Additive

Article ID

12FTM

Efficient fuel consumption and emission reduction using mid-infrared rays in energy generation.

Technology of fuel consumption and emission reduction, and enhanced electricity generation using mid-infrared rays – A Laser Additive

Umakanthan
Umakanthan
Madhu Mathi
Madhu Mathi
Umadevi
Umadevi
Sivaramakrishnan
Sivaramakrishnan
DOI

Abstract

Efficient utilization of available resources is a promising research direction. In-depth studies can provide a unique platform for reducing fuel consumption while simultaneously reducing pollution, thereby avoiding environmental pollution and health hazards for this purpose various fuel addictive are being used now. A laser additive for liquid and gaseous fuel is yet to be developed. In this context, we successfully used the 2-6 mid-infrared spectrum as a fuel additive. To generate mid-infrared we invented a hand-lit pocket-size mid-infrared generating automizer (MIRGA). The trial fuels were irradiated with this spectral range, which caused chemical changes in the fuels. MIRGA irritated gasoline and diesel consumption was reduced by 30-50% and 12-58% respectively. Also the emission by 1-62% and 1-68% respectively depending on the engine model. The irradiated liquified petroleum gas had extended utility days by 28 – 35% and gasoline power generators showed 28 % more electricity generation. These results were compared with non-irradiated fuels. This technology is safe, simple to implement at both the manufacturer and consumer levels, and cost-effective. This work demonstrates the MIRGA technology as an intriguing playground for revealing the effects of MIR on fuel chemistry, and the benefits are discussed here

Technology of fuel consumption and emission reduction, and enhanced electricity generation using mid-infrared rays – A Laser Additive

Efficient utilization of available resources is a promising research direction. In-depth studies can provide a unique platform for reducing fuel consumption while simultaneously reducing pollution, thereby avoiding environmental pollution and health hazards for this purpose various fuel addictive are being used now. A laser additive for liquid and gaseous fuel is yet to be developed. In this context, we successfully used the 2-6 mid-infrared spectrum as a fuel additive. To generate mid-infrared we invented a hand-lit pocket-size mid-infrared generating automizer (MIRGA). The trial fuels were irradiated with this spectral range, which caused chemical changes in the fuels. MIRGA irritated gasoline and diesel consumption was reduced by 30-50% and 12-58% respectively. Also the emission by 1-62% and 1-68% respectively depending on the engine model. The irradiated liquified petroleum gas had extended utility days by 28 – 35% and gasoline power generators showed 28 % more electricity generation. These results were compared with non-irradiated fuels. This technology is safe, simple to implement at both the manufacturer and consumer levels, and cost-effective. This work demonstrates the MIRGA technology as an intriguing playground for revealing the effects of MIR on fuel chemistry, and the benefits are discussed here

Umakanthan
Umakanthan
Madhu Mathi
Madhu Mathi
Umadevi
Umadevi
Sivaramakrishnan
Sivaramakrishnan

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Umakanthan T. 2026. “. Global Journal of Science Frontier Research – I: Interdisciplinary GJSFR-I Volume 24 (GJSFR Volume 24 Issue I1): .

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Crossref Journal DOI 10.17406/GJSFR

Print ISSN 0975-5896

e-ISSN 2249-4626

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Technology of fuel consumption and emission reduction, and enhanced electricity generation using mid-infrared rays – A Laser Additive

Umakanthan
Umakanthan
Madhu Mathi
Madhu Mathi
Umadevi
Umadevi
Sivaramakrishnan
Sivaramakrishnan

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