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◆ Polimery2026-03-23· Nanofluid

Stability and thermal conductivity of water-based hybrid nanofluids using oil palm biomass cellulose nanoparticles and metal oxide nanoparticles

Mageswari Manimaran, Mohd Nurazzi Norizan, Mohamad Haafiz Mohamad Kassim, Mohd Ridhwan Adam, Norli Abdullah, Mohd Nor Faiz Norrrahim, Emin Bayraktar

原始摘要(英文原文)· Original abstract
Hybrid nanofluids based on surface-modified anionic cellulose nanoparticles (ACNPs) and metal oxide nanoparticles (Al₂O₃, ZnO, TiO₂, MgO) were developed to improve the dispersion stability and thermal conductivity of aqueous systems. The hybrid nanocomposites were synthesized using ACNPs and then introduced into water (1 wt%) with added polyvinylpyrrolidone (PVP) using a two-step method. The stability of the aqueous systems was assessed based on visual observations and zeta potential measurements. Density, viscosity, thermal conductivity, and specific heat were also determined. The ZnO-based nanofluid demonstrated the most favorable properties, remaining stable for over 60 days and exhibiting thermal conductivity 109% and 81% higher at 45°C and 65°C compared to water, respectively. In contrast, the MgO system was characterized by high viscosity and long-term visual stability, but there was a smaller increase in thermal conductivity.
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Stability and thermal conductivity of water-based hybrid nanofluids using oil palm biomass cellulose nanoparticles and metal oxide nanoparticles — 科研速览 Science Skim