Experimental Study on the Characterisation and Thermo-Physical Properties of Graphene-Agro Based Hybrid Nanofluids
- Authors
-
-
Chukwuemeka S. IBEH
Author
-
Abubakre O. KAMARDEEN
Author
-
Saka A. ABDULKAREEM
Author
-
Aliyu A. ABDULLAHI
Author
-
- Keywords:
- Graphene, Rice husk ash, Nanofluids, Thermal conductivity, Viscosity, specific heat capacity.
- Abstract
-
Over the decade, researchers have developed new nanofluids for heat transfer applications. Little or no reports are made with the use of Agro-waste products as nanofluids. The sole purpose of this study is to evaluate the potential of nanoparticles (rice husk ash and graphene) in the thermo-physical enhancement of nanofluid for heat transfer applications. The study also highlights the synthesis of rice husk ash-graphene nanoparticles and the preparation of nanofluids. Particle characterisation was conducted using techniques such as SEM/EDXRF, XRD and TGA/DTA. Thermal conductivity, viscosity and heat capacity of the nanofluid were investigated for different particle concentration (0.1, 0.3 and 0.5wt.%) at temperatures (50, 60 and 70oC) with deionized water as base fluid. The examine nanofluids shows better stability, an average maximum thermal conductivity enhancement of 71% at 70oC and 0.5wt.% concentration for hybrid nanofluid. The excellent thermal properties of the nanofluids make them suitable candidates as nanofluids for heat transfer application.
- References
- Downloads
- Published
- 23-05-2026
- Section
- Articles
- License
-
Copyright (c) 2026 FUDMA Journal of Engineering and Technology

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
How to Cite
Similar Articles
- Musibaudeen O. IDRIS, Busayo S. ADEBOYE, Rasheedah A. AYOOLA, Abiodun G. ABIOYE, Abideen T. OYEWO, An Artificial Neural Network-Based Quality Control Framework for Nigerian Manufacturing Industries , FUDMA Journal of Engineering and Technology: Vol. 2 No. 1 (2026): June 2026
You may also start an advanced similarity search for this article.
