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using image analysis. They found that the sedimentation rate increased proportionally as the samples underwent up to 25 melting/solidification cycles. They also performed thermal cycles using DSC between 25 and 70°C. No significant change in melting temperature and latent heat capacity was observed over 120 thermal cycles. Table 2.1: Summary of PCM type, nanoparticle type, size and fraction Authors (year) Base PCM and Nanoparticle Enhancers Properties Material Dimensions Fraction of enhancers Elgafy and Lafdi (2005) Paraffin wax Tm: 67°C CNF Diameter: 100 nm Length: 20 μm 1, 2, 3, and, 4 wt.% Shaikh et al. (2008) Shell wax 100 Tm: N/A SWCNT MWCNT CNF Diameter: 1 nm Diameter: 10 nm Diameter: 100 nm 0.1, 0.4, 0.7, and 1 vol.% Weinstein et al. (2008) Paraffin wax Tm: 56°C Graphite Diameter: 4-10 nm Length: 1 μm 0.25, 0.5, 1, and 5% Kim and Drzal (2009) n-docosane Tm: 53-57°C xGNP Diameter: 15 μm Thickness:< 10nm 1, 2, 3, 5, and 7 wt.% Ho and Gao (2009) n-octadecane Tm: 25-28°C Al2O3 Diameter:159.6-196 nm 5 and 10 wt.% Wang et al. (2009) Paraffin wax Tm: 52-54°C MWCNT Diameter: 30 nm Length: 50 μm 0.2, 0.5, 1, and 2 wt.% Wang et al. (2010) Paraffin wax Tm: 52-54°C 𝛾 -Al2O3 Diameter: 20 nm 1, 2, and 5 wt.% Wu et al. (2010) Paraffin wax Tm: 58-60°C Cu, Al, C/Cu powders Average size: 25 nm 0.5, 1, and 2 wt.% Zheng et al. (2010) Hexadecane Tm: 18°C Graphite Planar distance: 0.335nm 0.2, 0.4, 0.6, 0.8, 1 vol.% 21PDF Image | THERMAL ENERGY STORAGE USING PARAFFIN WAX
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