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A eutectic mixture of galactitol and mannitol as a phase change material for latent heat storage

机译:半乳糖醇和甘露醇的共晶混合物,作为相变材料用于潜热存储

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摘要

The thermophysical properties of mixtures of galactitol and mannitol were examined via differential scanning calorimetry (DSC) and X-ray powder diffraction (XRD) analysis. The aforementioned sugars were found to form a eutectic mixture at a 30:70 molar ratio of galactitol and manntitol, and displayed a melting point of 153 degrees C while maintaining a high latent heat of fusion (Delta H-fus = 292 J g(-1)). The XRD data revealed that the eutectic mixture contained the alpha, beta, and delta forms of mannitol with the delta form being the major component. By varying the temperature ramp rates utilized in the DSC measurements from 0.5 degrees C min(-1) to 20 degrees C min(-1), the heat of crystallization as well as the crystallization temperature increased (c.f., Delta H-crys: 64 J g(-1) -> 197 J g(-1); T-c: 68 degrees C -> 105 degrees C). In addition, the temperature and the enthalpy of crystallization were also improved by up to 34% through the addition of small quantities (up to 0.5 wt%) of nucleating agents, such as graphite powder or silver iodide. After 100 heating/cooling cycles under an atmosphere of nitrogen, the heat of fusion of the eutectic mixture decreased by only 4% with no change in the melting point, and the mixture appeared to be chemically stable according to a Fourier transform infrared (FT-IR) spectroscopic analysis. Collectively, these data indicate that the eutectic mixture exhibits excellent cyclic stability under ambient atmospheres and offers potential for use in thermal energy storage applications. (C) 2015 Elsevier Ltd. All rights reserved
机译:半乳糖醇和甘露糖醇混合物的热物理性质通过差示扫描量热法(DSC)和X射线粉末衍射(XRD)分析进行了检查。发现上述糖在半乳糖醇和甘露糖醇的摩尔比为30:70的情况下形成低共熔混合物,并显示153°C的熔点,同时保持较高的熔融潜热(Delta H-fus = 292 J g(- 1))。 XRD数据表明,低共熔混合物含有α,β和δ形式的甘露醇,其中δ形式是主要成分。通过将DSC测量中使用的温度上升速率从0.5摄氏度min(-1)更改为20摄氏度min(-1),结晶热以及结晶温度均增加了(参见Delta H-crys:64 J g(-1)-> 197 J g(-1); Tc:68摄氏度-> 105摄氏度)。此外,通过添加少量(至多0.5 wt%)成核剂(例如石墨粉或碘化银),温度和结晶焓也提高了34%。在氮气氛下进行100次加热/冷却循环后,低共熔混合物的熔融热仅降低4%,熔点不变,并且根据傅立叶变换红外光谱(FT- IR)光谱分析。总的来说,这些数据表明,低共熔混合物在周围大气中表现出优异的循环稳定性,并为热能存储应用提供了潜力。 (C)2015 Elsevier Ltd.保留所有权利

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