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A promising form-stable phase change material prepared using cost effective pinecone biochar as the matrix of palmitic acid for thermal energy storage

机译:一种具有前景的形状稳定的相变材料其使用经济高效的松果生物炭作为棕榈酸的基质用于热能存储

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摘要

A promising new form-stable phase change material (PA/PB) was fabricated using pinecone biochar (PB) as the supporting material of palmitic acid (PA). The biochar of PB with large surface area was produced by forest residue of pinecone, and it was cheap, environment friendly and easy to prepare. The PB was firstly utilized as the supporter of PA and the characterizations of PA/PB were analyzed by the BET, SEM, XRD, DSC, TGA, FT-IR and thermal conductivity tester. The results demonstrated that the PA was physically absorbed by the PB and the crystal structure of the PA was not destroyed. The results of DSC showed that the fusing and crystallization points of the form-stable phase change material with the maximum content of PA (PA/PB-4) were 59.25 °C and 59.13 °C, and its fusing and freezing latent heat were 84.74 kJ/kg and 83.81 kJ/kg, respectively. The results of TGA suggested that the thermal stability of the PA/PB-4 composite was excellent, which could be used for the applications of thermal energy storage. Furthermore, the thermal conductivity of PA/PB-4 was 0.3926 W/(m∙K), which was increased by 43.76% compared with that of the pure PA. Thus, the study results indicated that the PA/PB-4 had great potential for thermal energy storage applications.
机译:利用松果体生物炭(PB)作为棕榈酸(PA)的支撑材料,制备了一种有希望的新型形状稳定相变材料(PA / PB)。 PB的大面积生物炭是由松果酮的森林残留物生产的,价格便宜,环境友好,易于制备。首先将PB用作PA的载体,并通过BET,SEM,XRD,DSC,TGA,FT-IR和热导率测试仪分析了PA / PB的特征。结果表明PA被PB物理吸收,并且PA的晶体结构没有被破坏。 DSC的结果表明,PA含量最高的形状稳定相变材料(PA / PB-4)的熔合和结晶点分别为59.25 C和59.13 C,其熔合和冻结潜热为84.74。 kJ / kg和83.81 kJ / kg。 TGA的结果表明,PA / PB-4复合材料的热稳定性极好,可用于储热技术。此外,PA / PB-4的导热系数为0.3926 W /(m·K),比纯PA的导热系数提高了43.76%。因此,研究结果表明PA / PB-4在热能存储应用方面具有巨大潜力。

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