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Enhanced thermal conductivity of form-stable phase change composite with single-walled carbon nanotubes for thermal energy storage

机译:具有单壁碳纳米管的形状稳定相变复合材料的导热性增强可用于储热

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摘要

A striking contrast in the thermal conductivities of polyethylene glycol (PEG)/diatomite form-stable phase change composite (fs-PCC) with single-walled carbon nanotubes (SWCNs) as nano-additive has been reported in our present study. Compared to the pure PEG, the thermal conductivity of the prepared fs-PCC has increased from 0.24 W/mK to 0.87 W/Mk with a small SWCNs loading of 2 wt%. SWCNs are decorated on the inner surface of diatomite pores whilst retaining its porous structure. Compared to PEG/diatomite fs-PCC, the melting and solidification time of the PEG/diatomite/SWCNs fs-PCC are respectively decreased by 54.7% and 51.1%, and its thermal conductivity is 2.8 times higher. The composite can contain PEG as high as 60 wt% and maintain its original shape perfectly without any PEG leakage after subjected to 200 melt-freeze cycles. DSC results indicates that the melting point of the PEG/diatomite/SWCNs fs-PCC shifts to a lower temperature while the solidification point shifts to a higher temperature due to the presence of SWCNs. Importantly, the use of SWCNs is found to have clear beneficial effects for enhancing the thermal conductivity and thermal storage/release rates, without affecting thermal properties, chemical compatibility and thermal stability. The prepared PEG/diatomite/SWCNs fs-PCC exhibits excellent chemical and thermal durability and has potential application in solar thermal energy storage and solar heating.
机译:在本研究中,已经报道了聚乙二醇(PEG)/硅藻土形状稳定的相变复合材料(fs-PCC)与单壁碳纳米管(SWCNs)作为纳米添加剂的热导率形成鲜明对比。与纯PEG相比,制备的fs-PCC的热导率从0.24 W / mK增加到0.87 W / Mk,SWCN的载量为2 loadingwt%。 SWCNs在硅藻土孔隙的内表面上装饰,同时保留其多孔结构。与PEG /硅藻土fs-PCC相比,PEG /硅藻土/ SWCNs fs-PCC的熔化和固化时间分别减少了54.7%和51.1%,其导热系数是2.8倍。该复合材料可包含高达60 wt%的PEG,并且经过200次熔体冷冻循环后,可以完美地保持其原始形状而没有PEG泄漏。 DSC结果表明由于SWCN的存在,PEG /硅藻土/ SWCN的fs-PCC的熔点移至较低的温度,而凝固点移至较高的温度。重要的是,发现使用SWCN具有明显的有益效果,可以提高导热系数和热存储/释放速率,而不会影响热性能,化学相容性和热稳定性。制备的PEG /硅藻土/ SWCNs fs-PCC具有优异的化学和热耐久性,并在太阳能储热和太阳能加热方面具有潜在的应用前景。

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