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Enhanced properties of diatomite-based composite phase change materials for thermal energy storage

机译:硅藻土基复合相变材料的储热性能增强

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Diatomite-based composite phase change materials (PCMs) with enhanced properties were prepared by vacuum impregnation method for thermal energy storage. Diatomite is used as a supporting matrix in composite PCMs due to its natural high porosity and relatively low price. Particularly, diatomite after microwave-acid treatment (D-m) with higher loading capability compared to raw diatomite was used as a supporting matrix to stabilize lauric acid-stearic acid (LA-SA). To improve the thermal conductivity of the composite PCMs, expanded graphite (EG) was introduced as a support matrix together with D-m at a weight ratio of 1:10 of EG to D-m. FTIR and XRD analysis indicated that the crystal structure of diatomite was not affected by the microwave-acid treatment and addition of EG, and no chemical reaction occurred between LA-SA and supports during impregnation. Devised LA-SA/D-m/EG with 72.2% loadage of LA-SA and a phase change temperature of 31.17 degrees C had latent heat value of 117.30 J g(-1) for melting and 114.50 J g(-1) for freezing, respectively. The thermal conductivity of LA-SA/D-m/EG was up to 3.2 times that of LA-SA/D-m. The thermal infrared images presented that the transient temperature response of LA-SA/D-m was enhanced after introducing of 2.5 wt% EG. Therefore, the prepared composite phase change material is a potential candidate for thermal energy storage in the indoor thermal comfort system, especially the building envelope. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过真空浸渍法制备了性能增强的硅藻土基复合相变材料(PCM)。硅藻土由于其天然的高孔隙率和相对较低的价格而被用作复合材料PCM中的支撑基质。特别地,相比于未加工的硅藻土,经过微波酸处理(D-m)后具有更高负载能力的硅藻土被用作支撑基质以稳定月桂酸-硬脂酸(LA-SA)。为了提高复合材料PCM的导热性,以EG与D-m的重量比为1:10引入了膨胀石墨(EG)与D-m一起作为支撑基质。 FTIR和XRD分析表明,硅藻土的晶体结构不受微波酸处理和EG添加的影响,并且在浸渍过程中LA-SA与载体之间没有发生化学反应。设计的LA-SA / Dm / EG的LA-SA负载量为72.2%,相变温度为31.17摄氏度,熔化时的潜热值为117.30 J g(-1),冷冻时的潜热值为114.50 J g(-1),分别。 LA-SA / D-m / EG的热导率高达LA-SA / D-m的3.2倍。热红外图像表明,引入2.5 wt%的EG后,LA-SA / D-m的瞬态温度响应得到增强。因此,所制备的复合相变材料是室内热舒适系统,尤其是建筑物围护结构中热能存储的潜在候选者。 (C)2019 Elsevier Ltd.保留所有权利。

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