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Crystallization of inorganic salt hydrates in polymeric foam for thermal energy storage application

机译:聚合物泡沫中无机盐水合物的结晶,用于热能存储应用

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Inorganic salt hydrates as phase change material (PCM) offers high energy storage density, low heat of combustion and relatively high thermal conductivity than organic PCMs at a reasonable cost. Moreover, these are nonflammable and also available in the large temperature range for the thermal energy storage (TES) application. However, phase segregation, supercooling and incongruent melting are the main disadvantages which confine them for TES application. In this present study, open cell polyurethane foam (PU foam) as a heterogeneous surface was introduced to mitigate the problem of phase segregation during its repeated thermal cycles. Composite (PU-PCM) having a combination of porous polyurethane foam sheet and saturated inorganic salt solution, by soaking different saturated salt solutions within pores, was prepared. Solution crystallization process was carried out to develop inorganic salt hydrate crystals within the pores from their aqueous solutions. For thermal insulation application, a model experimental setup was constructed and performance of PU-PCM composite sheet compared with the performance of dry PU foam. Various melting and freezing cycles of salt hydrates inside the porous structure were analyzed and the results are discussed.
机译:与有机PCM相比,无机盐水合物作为相变材料(PCM)具有较高的能量存储密度,较低的燃烧热和相对较高的导热率,且价格合理。此外,它们是不易燃的,并且还可以在大温度范围内用于热能存储(TES)应用。然而,相分离,过冷和熔融不均匀是将它们限制在TES应用中的主要缺点。在本研究中,引入了开孔聚氨酯泡沫(PU泡沫)作为异质表面,以减轻其反复热循环过程中的相分离问题。通过将不同的饱和盐溶液浸泡在孔中来制备具有多孔聚氨酯泡沫片和饱和无机盐溶液的组合的复合材料(PU-PCM)。进行溶液结晶过程以从其水溶液中在孔内形成无机盐水合物晶体。对于绝热应用,构建了模型实验装置,并将PU-PCM复合片材的性能与干PU泡沫的性能进行了比较。分析了多孔结构内部盐水合物的各种熔化和冻结循环,并讨论了结果。

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