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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Delignified wood/capric acid-palmitic acid mixture stable-form phase change material for thermal storage
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Delignified wood/capric acid-palmitic acid mixture stable-form phase change material for thermal storage

机译:脱氧木/癸酸 - 棕榈酸混合物稳定形状的热储存相变材料

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摘要

In this study, wood was delignified, and the capric-palmitic acid eutectic (CA-PA) mixture was impregnated into the delignified wood (DW) to create a stable-form phase change material (DW/CA-PA SFPCM) using a vacuum impregnation method. Subsequently, the properties of the SFPCM were investigated by scanning electron microscopy (SEM), FTIR, differential scanning calorimetry (DSC), thermal gravimetric analysis (TG), and hot-disk thermal constant analysis. It was found that the impregnation ratio of the CA-PA mixture into the DW reached 61.2% without leakage. SEM results showed microscale pores generated in the organized cell wall of the DW compared with wood. The pores of DW were filled completely. By contrast, the pores of wood were partially filled. The CA-PA mixture and the DW was physical combination from FTIR result. The SFPCM had a phase transition temperature of 23.4 degrees C and high latent heat of 94.4 J g(-1). The DW/CA-PA SFPCM had a high thermal stability due to the fact that the working temperature (i.e. sun radiation temperature) was much lower than the decomposition temperature. It also had great thermal reliability. The thermal conductivity of the SFPCM improved significantly by 133.3%. By the above analysis, the SFPCM had superior properties, which make it to be potential material by storing and releasing solar thermal energy in practical applications.
机译:在这项研究中,木材是脱去过氧化物的,并将癸酰棕榈酸共晶(Ca-Pa)混合物浸渍到上磷酸盐中(DW)中,使用真空制造稳定形状相变材料(DW / CA-PA SFPCM)浸渍方法。随后,通过扫描电子显微镜(SEM),FTIR,差示扫描量热法(DSC),热重量分析(TG)和热盘热恒定分析来研究SFPCM的性质。发现Ca-Pa混合物进入DW的浸渍比率达到61.2%而无需泄漏。 SEM结果显示,与木材相比,DW的有组织的细胞壁中产生的微米孔。 DW的毛孔完全填充。相比之下,木材毛孔被部分地填充。 Ca-Pa混合物和DW是FTIR结果的物理组合。 SFPCM的相变温度为23.4摄氏度和高潜热的94.4Jg(-1)。由于工作温度(即,太阳辐射温度)远低于分解温度,DW / CA-PA SFPCM具有高的热稳定性。它也具有很大的热可靠性。 SFPCM的导热率显着提高了133.3%。通过上述分析,SFPCM具有优异的特性,通过在实际应用中通过存储和释放太阳能热能,使其成为潜在材料。

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