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Fabrication and characterization of capric acid/reduced graphene oxide decorated diatomite composite phase change materials for solar energy storage

机译:癸酸/还原氧化石墨烯修饰的硅藻土复合相变材料的制备与表征

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摘要

In this paper, diatomite-based composite phase change materials (DI-based CPCMs) were fabricated by the vacuum impregnation of capric acid (CA) into reduced graphene oxide decorated diatomite (rGO-DI). In the DI-based CPCMs, DI was used as the supporting material, which was first purified by thermal treatment and alkali treatment, to improve the adsorption capacity of the PCM, rGO was used to decorate the DI to improve the thermal conductivity of CPCMs. The rGO-DI could retain CA at the weight fraction of 60% without leakage. The maximum melting and freezing enthalpy of CA/rGO-DI-2 reached 106.2 J g−1 and 108.6 J g−1, respectively, and its thermal conductivity was up to 0.5226 W m−1 · K, 260.4% and 81.3% higher than pure CA and CA/DI, respectively. The CPCMs have good thermal reliability and thermal stability, and there was no chemical reaction between CA and rGO-DI. The CPCMs maintained thermal properties after 200 melting–freezing cycles. Finally, the CPCMs have potential for application in solar energy storage systems.
机译:本文通过将癸酸(CA)真空浸渍到还原的氧化石墨烯修饰的硅藻土(rGO-DI)中,制备了硅藻土基复合相变材料(DI基CPCM)。在基于DI的CPCM中,将DI用作支撑材料,首先通过热处理和碱处理对其进行纯化,以提高PCM的吸附能力,使用rGO修饰DI,以提高CPCM的导热性。 rGO-DI可以将CA的重量分数保持在60%,而不会泄漏。 CA / rGO-DI-2的最大熔化焓和冻结焓分别达到106.2 J g -1 和108.6 J g -1 ,并且其导热系数高达0.5226 W m -1 ·K,分别比纯CA和CA / DI高260.4%和81.3%。 CPCM具有良好的热可靠性和热稳定性,并且CA和rGO-DI之间没有化学反应。在200个融化-冷冻循环之后,CPCM保持了热性能。最后,CPCM具有在太阳能存储系统中应用的潜力。

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