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Preparation and thermal performance of methyl palmitate and lauric acid eutectic mixture as phase change material (PCM)

机译:棕榈酸甲酯和月桂酸低共熔混合物作为相变材料(PCM)的制备和热性能

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摘要

A series of binary mixtures of Methyl Palmitate (MP) and Lauric Acid (LA) were prepared and investigated, aiming for potential phase change material (PCM) for thermal energy storage systems. The thermal analysis of the PCM binary mixtures was investigated by means of Differential Scanning Calorimetry (DSC). A theoretical and experimental determination of the eutectic mixture was established. The results indicated that the eutectic binary mixture of 60%MP and 40%LA has desirable properties of phase transition temperatures within the comfort temperature range (T_m = 25.6 °C, T_f = 20.2 °C) and high latent heat capacity (ΔH_m = 205.4 J/g, ΔH_f = 205.8 J/g). The paper experimentally studied the other important thermo-physical properties required for modelling and stimulating the PCM in any storage systems such as thermal conductivity, enthalpy curve, phase diagram, specific heat, thermal diffusivity, and density. The thermal stability test indicated that the eutectic mixture had reliable thermal performance upon thermal cycling. Based on all these results, the MP-LA eutectic mixture is a promising material for thermal energy storage.
机译:制备并研究了一系列棕榈酸甲酯(MP)和月桂酸(LA)的二元混合物,旨在开发用于热能存储系统的潜在相变材料(PCM)。通过差示扫描量热法(DSC)研究了PCM二元混合物的热分析。建立了共晶混合物的理论和实验确定。结果表明,60%MP和40%LA的共晶二元混合物在舒适温度范围(T_m = 25.6°C,T_f = 20.2°C)和高潜热容量(ΔH_m= 205.4)内具有令人满意的相变温度特性J / g,ΔH_f= 205.8J / g)。本文通过实验研究了在任何存储系统中对PCM进行建模和刺激所需的其他重要的热物理特性,例如热导率,焓曲线,相图,比热,热扩散率和密度。热稳定性测试表明,共晶混合物在热循环后具有可靠的热性能。基于所有这些结果,MP-LA共晶混合物是用于热能存储的有前途的材料。

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  • 来源
    《Journal of Energy Storage》 |2017年第10期|418-424|共7页
  • 作者单位

    Department of Mining and Nuclear Engineering, Missouri University of Science and Technology, 301 W 14th St, Rolla, MO, United States,Phase Change Energy Solutions, 120 E Pritchard St, Asheboro, NC, United States;

    Department of Mining and Nuclear Engineering, Missouri University of Science and Technology, 301 W 14th St, Rolla, MO, United States;

    Department of Mining and Nuclear Engineering, Missouri University of Science and Technology, 301 W 14th St, Rolla, MO, United States;

    Phase Change Energy Solutions, 120 E Pritchard St, Asheboro, NC, United States;

    Phase Change Energy Solutions, 120 E Pritchard St, Asheboro, NC, United States;

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