Effect of carbon black and titanium dioxide dispersants on solidification of multiwall carbon nanotube-added salt-based phase change material
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Date
2021
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ASTM International
Abstract
The effect of carbon black and titanium dioxide (TiO<inf>2</inf>) dispersants on solidification of potassium nitrate phase change material (PCM) with multiwall carbon nanotube (MWCNT) addition was investigated using the Fourier method of thermal analysis. On addition of 0.1 % of MWCNT, the solidification time of PCM decreased by 26 %, enhancing the heat release rates. A decrease in thermal diffusivity of the PCM was observed on addition of MWCNT particles. These benefits were observed to diminish over successive thermal cycles because of the agglomeration of MWCNT particles. To prevent the agglomeration of additives, dispersants such as carbon black and TiO<inf>2</inf> were used. In the presence of carbon black, the nanosalt PCM retained all the cooling curve parameters over 10 thermal cycles, preventing the agglomeration of nanoadditives. On the other hand, the dispersant TiO<inf>2</inf> significantly enhanced the thermal diffusivity property of PCM by virtue of its superior thermal conductivity. These are critical outcomes in development of nanosalt PCMs for thermal energy storage applications. © © 2021 by ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959 ASTM International is not responsible, as a body, for the statements and opinions expressed in this paper. ASTM International does not endorse any products represented in this paper.
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Keywords
Additives, Agglomeration, Carbon black, Heat storage, Nanotubes, Oxide minerals, Phase change materials, Phase diagrams, Potash, Potassium Nitrate, Solidification, Thermal conductivity, Thermal cycling, Thermoanalysis, Titanium dioxide, Cooling curve, Dispersants, Effect of carbons, Fourier methods, Heat Release Rate (HRR), Nanoadditives, Solidification time, Titanium dioxides (TiO2), Multiwalled carbon nanotubes (MWCN)
Citation
Materials Performance and Characterization, 2021, 10, 1, pp. 278-284
