Experimental investigation and AI-based prediction of engine performance and emissions using CeO2-enhanced biodiesel blends

G Ganesh K D D K Ramesha K Kapilan Natesan N Norkhairunnisa Mazlan S Sadashiva Prabhu S

Abstract

Abstract The global depletion of fossil fuel resources and growing environmental concerns have driven the pursuit of sustainable alternative energy sources, with biodiesel emerging as a promising option. In the present work, experimental and AI prediction studies examine the combustion, performance, and emissions of a B20-blended fuel engine. The biodiesel was derived from used temple oil, and CeO 2 nanoparticles (NPs) were used as additives. The experiments conducted at a constant engine speed with various loads reveal that CeO 2 NPs at a 100-ppm concentration significantly improve brake thermal efficiency (BTE). The specific fuel consumption decreases with increasing CeO 2 NPs concentration, indicating enhanced fuel efficiency. The higher cylinder pressure and net heat release (NHR) further highlight the improved combustion characteristics. The emission analysis reveals a notable decline in hydrocarbons, carbon monoxide, and nitrogen oxides levels, with CeO 2 NPs at a 100-ppm concentration achieving the lowest emissions due to superior fuel atomization, improved combustion efficiency, and enhanced thermal management facilitated by the presence of CeO 2 NPs. The B20 blend with CeO 2 NPs at a 100-ppm concentration demonstrated superior performance metrics at maximum load, as evidenced by a 1.57% increase in BTE, a 2.83% rise in cylinder pressure, and a 5.95% increase in NHR compared to conventional diesel. A significant reduction in pollutant emissions, such as carbon monoxide, decreased by 66.67%, hydrocarbons by 13.51%, and nitrogen oxides by 6.04% relative to the B20 blend. The validation of experimental data using a random forest regressor model demonstrates strong predictive accuracy, characterized by low mean squared errors and high R 2 scores across various performance metrics. Overall, the findings of this work confirm that the B20 blend with CeO 2 NPs is a sustainable and efficient replacement for traditional diesel fuel.

Article Details

Volume / Issue Vol. 15, Issue 1
Published December 13, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (5)

G

Ganesh K

D

D K Ramesha

K

Kapilan Natesan

N

Norkhairunnisa Mazlan

S

Sadashiva Prabhu S