Experimental Investigations on the Effects of Cerium Oxide Nanoparticle Fuel Additives on Biodiesel

Экспериментальное исследование влияния наночастиц оксида церия в качестве топливной присадки на биодизельное топливо
V. Sajith, C. B. Sobhan, G. P. Peterson
2010-01-01

NOx emissionsbiodiesel fuel additivescerium oxide nanoparticlesengine performanceultrasonic agitation
This paper reports the results of experimental investigations on the influence of the addition of cerium oxide in the nanoparticle form on the major physicochemical properties and the performance of biodiesel. The physicochemical properties of the base fuel and the modified fuel formed by dispersing the catalyst nanoparticles by ultrasonic agitation are measured using ASTM standard test methods. The effects of the additive nanoparticles on the individual fuel properties, the engine performance, and emissions are studied, and the dosing level of the additive is optimized. Comparisons of the performance of the fuel with and without the additive are also presented. The flash point and the viscosity of biodiesel were found to increase with the inclusion of the cerium oxide nanoparticles. The emission levels of hydrocarbon and NOx are appreciably reduced with the addition of cerium oxide nanoparticles.
1
Adding cerium oxide nanoparticles increased the flash point and viscosity of biodiesel.
2
Cerium oxide nanoparticle addition appreciably reduced hydrocarbon and NOx emissions from the engine.
3
Cerium oxide nanoparticles were dispersed in biodiesel using ultrasonic agitation, and fuel properties were evaluated under ASTM standard test methods.
4
Performance comparisons were conducted between biodiesel with and without cerium oxide nanoparticles.
5
The study evaluated additive effects on fuel properties, engine performance, and emissions while optimizing the nanoparticle dosing level.

Biodiesel fuel modified with cerium oxide nanoparticles and its operation in an engine

Effects of cerium oxide nanoparticle addition on biodiesel physicochemical properties, engine performance, and emissions, including additive-dose optimization

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Publication Date
2010-01-01
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Authors
V. Sajith
C. B. Sobhan
G. P. Peterson
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