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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Performance of novel Na2SO4-NaCl-ceramic composites as high temperature phase change materials for solar power plants (Part II)
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Performance of novel Na2SO4-NaCl-ceramic composites as high temperature phase change materials for solar power plants (Part II)

机译:新型Na2SO4-NaCl-陶瓷复合材料的性能作为太阳能发电厂的高温相变材料(第二部分)

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The performance of the eutectic Na2SO4-NaCl-alpha-alumina and-mullite composites (melting point of 626.0 degrees C) with different salt to ceramic ratios (45:55, 50:50, 55:45, 60:40, wt%) was investigated to evaluate their potential application as novel high temperature (> 600 degrees C) phase change materials for solar thermal energy storage. The results show that the thermal stability of these composites decreases with increased salt content. The eutectic Na2SO4-NaCl-alpha-alumina and-mullite (45:55, wt%) composites show better thermal performance than the composites with other mass ratios after 20 thermal heating-freezing cycles at the temperature range of 550-680 degrees C in air. 300 thermal cycle tests were therefore carried out with each of these two composites to evaluate their longer-term thermal stability. The results show that the cycled Na2SO4-NaCl-alpha-alumina (45:55, wt %) composite has a weight loss of 4.6% and its heat of fusion decreases from 117.8 J/g to 105.3 J/g while the cycled Na2SO4-NaCl/mullite (45:55, wt%) composite has a weight loss of 6.9% and its heat of fusion decreases from 117.6 J/g to 98.6 J/g. XRD and SEM-EDS analysis confirm that the eutectic Na2SO4-NaCl salt has good chemical compatibility with alpha-alumina and mullite ceramic materials, where no chemical reaction and phase separation occurs in the two composites during the 300 thermal cycling test. Addition of alpha-alumina and mullite (55 wt%) to the eutectic Na2SO4-NaCl salt can improve its thermal conductivity by more than 3 times with alpha-alumina having a better enhancement than mullite.
机译:共晶Na2SO4-NaCl-α-氧化铝和莫来石复合材料的性能(熔点626.0℃)与陶瓷比例不同(45:55,50:50,55:45,60:40,wt%)研究了将它们的潜在应用评估为新型高温(> 600摄氏度)的太阳能热能储存的相变材料。结果表明,这些复合材料的热稳定性随着盐含量增加而降低。共晶Na 2 SO 4-NaCl-α-氧化铝和莫来石(45:55,WT%)复合材料显示出比在550-680摄氏度的温度范围内的20个热加热冷冻循环后与其他质量比的复合材料更好的热性能空气。因此,通过这两种复合材料中的每一种进行300个热循环试验,以评估它们的长期热稳定性。结果表明,循环的Na 2 SO 4-NaCl-α-氧化铝(45:55,WT%)复合物重量损失为4.6%,其融合热量从117.8J / g降低至105.3J / g,而循环的Na 2 SO 4- NaCl /莫来石(45:55,WT%)复合材料的重量损失为6.9%,其融合热量从117.6J / g降至98.6J / g。 XRD和SEM EDS分析证实,共晶Na 2 SO 4-NaCl盐与α-氧化铝和莫来石陶瓷材料具有良好的化学相容性,其中在300热循环试验期间,在两种复合材料中没有发生化学反应和相分离。向共晶Na 2 SO 4-NaCl盐加入α-氧化铝和莫来石(55wt%)可以通过比莫来石具有更好的增强的α-氧化铝将其导热率提高3次。

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