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首页> 外文期刊>Energy >Low cost and eco-friendly wood fiber-based composite phase change material: Development, characterization and lab-scale thermoregulation performance for thermal energy storage
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Low cost and eco-friendly wood fiber-based composite phase change material: Development, characterization and lab-scale thermoregulation performance for thermal energy storage

机译:低成本和环保的木纤维基复合相变材料:用于储热的开发,表征和实验室规模的温度调节性能

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摘要

Thermal efficiency of passive building designs can be improved using phase change materials (PCMs). This study was focused on the development and lab-scale thermoregulation performance of wood fiber(WF)/capric acid-stearic acid(CA-SA) eutectic mixture as low-cost and eco-friendly composite PCM for thermal energy storage (TES). The composite including 52 wt% PCM showed leak-proof property. The structural/morphological characteristics, TES properties, cycling TES reliability and chemical stability of the leak-proof CPCM were investigated by SEM, FT-IR, XRD, DSC, and TGA techniques. The lab-scale thermoregulation performance of CPCM board was also evaluated experimentally. The SEM results indicated that the eutectic PCM was successfully impregnated with WF as the spectral findings confirmed the good compatibility among its constituents. DSC results demonstrated that the CPCM had a melting temperature of 23.38 ℃ and latent heat of 92.1 J/g. TGA measurements revealed that the servicing temperature of the CPCM was much over than its thermal decomposition limit. It had stable TES properties and chemical structure after 600 melting-freezing cycles. Furthermore, lab-scale performance test exhibited that the temperature difference at the inside center of CPCM cubic cell and WF cubic cell was ascertained as averagely 2.67 ℃ during a 72 min-heating period and 1.18 ℃ during a 100 min-cooling period.
机译:使用相变材料(PCM)可以提高无源建筑设计的热效率。这项研究的重点是木质纤维(WF)/癸酸-硬脂酸(CA-SA)低共熔混合物作为低成本和环保的热能存储(PCM)复合PCM的开发和实验室规模的温度调节性能。包含52重量%PCM的复合材料显示出防漏性能。通过SEM,FT-IR,XRD,DSC和TGA技术研究了防漏CPCM的结构/形态特征,TES特性,循环TES可靠性和化学稳定性。还通过实验评估了CPCM板的实验室规模的温度调节性能。 SEM结果表明,共晶PCM成功地被WF浸渍,因为光谱结果证实了其成分之间的良好相容性。 DSC结果表明,CPCM的熔融温度为23.38℃,潜热为92.1J / g。 TGA测量表明,CPCM的维修温度远高于其热分解极限。经过600次熔融冻结循环后,它具有稳定的TES性能和化学结构。此外,实验室规模的性能测试表明,在72分钟的加热期间,CPCM立方电池和WF立方电池内部中心的温差平均确定为2.67℃,在100分钟的冷却期间,平均温差确定为1.18℃。

著录项

  • 来源
    《Energy》 |2020年第15期|116983.1-116983.10|共10页
  • 作者单位

    Department of Metallurgical and Material Engineering Karadeniz Technical University 61080 Trabzon Turkey King Fahd University of Petroleum and Minerals Centers of Research Excellence Renewable Energy Research Institute Dhahran 31261 Saudi Arabia;

    Department of Metallurgical and Material Engineering Karadeniz Technical University 61080 Trabzon Turkey;

    School of Energy Management Shri Mata Vaishno Devi University Katra 182320 J&K India Center of Research Excellence in Renewable Energy and Power Systems King Abdulaziz University Jeddah 80200 Saudi Arabia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wood fiber; Fatty acid; Eutectic mixture; PCM; Thermal energy storage; Cycling stability; Thermal durability; Lab-scale thermoregulation;

    机译:木纤维;脂肪酸;共晶混合物;PCM;热能存储;循环稳定性;耐热性;实验室规模的温度调节;

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