The present study prepared nanocomposite phase change materials (PCMs) based on calcium chloride hexahydrate (CaCl 2 ·6H 2 O) with gamma aluminum oxide (γ-Al 2 O 3 ) nanoparticles to characterize phase change behavior, such as the supercooling degree, phase change temperature, latent heat, thermal conductivity, and thermal stability. Results demonstrate that thermal conductivity and heat transfer of the CaCl 2 ·6H 2 O/γ-Al 2 O 3 nanocomposite PCMs are significantly enhanced and supercooling of CaCl 2 ·6H 2 O/γ-Al 2 O 3 nanocomposite PCMs is suppressed. Moreover, a 50 run cycling test verifies that the CaCl 2 ·6H 2 O nanocomposite PCMs contained with 1 wt % γ-Al 2 O 3 possesses enhanced thermal behavior. The degree of supercooling is within the range of 0.3–1.1 °C; the maximum reductions in the latent heat is 5.9%; and no phase segregation was observed. The CaCl 2 ·6H 2 O/γ-Al 2 O 3 nanocomposite PCMs presented acceptable thermal reliability, chemical stability, and heat transfer characteristics, thereby reflecting its acceptability for low-temperature solar thermal energy storage applications.
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Li et al. (2017) studied this question.
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