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Galactitol hexa stearate and galactitol hexa palmitate as novel solid-liquid phase change materials for thermal energy storage

机译:半乳糖醇六硬脂酸酯和半乳糖醇六棕榈酸酯为新型储热固液相变材料

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摘要

Galactitol has a melting point of 187.41 °C and a fusion enthalpy of 401.76 J g~(-1.) Its melting temperature is not suitable for many thermal energy storage applications although it has good latent heat storage capacity compared to the several traditional phase change materials (PCMs). The galactitol also has high supercooling degree as about 72 °C. These unfavorable properties limit the usage potential of galactitol in thermal energy storage applications. However, the phase change temperature and supercooling degree of galactitol can be reduced to a reasonable value and therefore its feasibility for energy storage systems can be increased. For this aim, in this study, galactitol hexa stearate (GHS) and galactitol hexa palmitate (GHP) were prepared as novel solid-liquid PCM by means of esterification reaction of the galactitol with palmitic acid and stearic acid. The GHP and GHS esters were characterized chemically using FT-IR and 'H NMR techniques. By using DSC analysis method, the melting temperature and latent heat value of the PCMs were determined as 31.78 °C and 201.66 J g~(-1 )for GHP ester and 47.79 °C and 251.05 J g"1 for GHS ester. Thermal cycling test showed that the prepared PCMs had good thermal reliability after thermal 1000 melting-freezing cycles. Thermogravimetric analysis (TGA) results revealed that the PCMs have good thermal stability over their working temperatures. In addition, thermal conductivity of the prepared PCMs was increased as about 26.3% for GHP and 53.3% for GHS by addition of 5 wt.% expanded graphite. Based on all results it can be concluded that the prepared GHP and GHS esters can be considered as promising solid-liquid PCMs for many energy storage applications such as solar energy storage, indoor temperature controlling in buildings, production of smart textile and insulation clothing due to their good energy storage properties.
机译:半乳糖醇的熔点为187.41°C,熔融焓为401.76 J g〜(-1)。尽管与几种传统的相变相比,其具有良好的潜热存储能力,但其熔点温度不适合许多热能存储应用。材料(PCM)。半乳糖醇还具有较高的过冷度,约为72°C。这些不利的性质限制了半乳糖醇在热能存储应用中的使用潜力。然而,可以将半乳糖醇的相变温度和过冷度降低至合理的值,因此可以提高其在能量存储系统中的可行性。为了这个目的,在本研究中,通过半乳糖醇与棕榈酸和硬脂酸的酯化反应,制备了半乳糖醇六硬脂酸酯(GHS)和半乳糖醇六棕榈酸酯(GHP)作为新型固液PCM。使用FT-IR和1H NMR技术对GHP和GHS酯进行化学表征。通过DSC分析法,分别测定了GHP酯的PCM的熔融温度和潜热值为31.78°C和201.66 J g〜(-1),GHS酯的为47.79°C和251.05 J g“ -1。热循环试验表明,经过1000次热熔循环后,所制备的PCM具有良好的热可靠性;热重分析(TGA)结果表明,所制备的PCM在其工作温度下具有良好的热稳定性;此外,所制备的PCM的热导率也随温度的升高而提高。通过添加5 wt。%的膨胀石墨,GHP的含量为26.3%,GHS的含量为53.3%,基于所有结果,可以得出结论,所制备的GHP和GHS酯可被认为是许多能源存储应用中有希望的固液PCM太阳能存储,建筑物内的室内温度控制,智能纺织品和保温服的生产,因为它们具有良好的储能性能。

著录项

  • 来源
    《Solar Energy》 |2011年第9期|p.2061-2071|共11页
  • 作者单位

    Gaziosmanpaija University, Department of Chemistry, 60150 Tokat, Turkey;

    Gaziosmanpaija University, Department of Chemistry, 60150 Tokat, Turkey;

    Gaziosmanpaija University, Department of Chemistry, 60150 Tokat, Turkey;

    Gaziosmanpaija University, Department of Chemistry, 60150 Tokat, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stearic acid; Palmitic acid; Galactitol; PCM; Thermal energy storage; Thermal reliability;

    机译:硬脂酸;棕榈酸;半乳糖醇PCM;热能储存;热可靠性;
  • 入库时间 2022-08-18 00:26:09

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