首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Experimental study on the thermal stability of a new molten salt with low melting point for thermal energy storage applications
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Experimental study on the thermal stability of a new molten salt with low melting point for thermal energy storage applications

机译:新型熔盐热稳定性的实验研究热能储存应用的低熔点

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摘要

AbstractThis paper presents a new kind of KNO3–NaNO3–LiNO3–Ca(NO3)2·4H2O with certain proportion, which is potentially suitable for high-temperature thermal energy storage in concentrating solar power technology. Its primary thermophysical properties were evaluated. Thermal physical tests were conducted for the samples obtained at different stages during the tests of 1,200-h exposure to constant high temperature and thermal shock cycling for 1000 times. Results show that a comprehensive grasp of the time evolution of its thermophysical properties and their respective changes with heating time and thermal cycles were achieved. The thermophysical properties of the molten salt show good repeatability before and after the experiments, and most variations are within ± 10%. In addition, the normal temperature X-ray diffraction diagram of the candidate was measured and analyzed after 1200h of heating and 1000 times of thermal cycling. Although part of calcium nitrates has been dissolved and formed a new solution, this phenomenon does not affect the performance of the candidates, which showed high-temperature tolerance and good thermal stability. Therefore, this new kind of molten salt thermal storage materials is a promising candidate for both heat transfer and energy storage in large-scale solar thermal power plants.
机译:<![cdata [ 抽象 本文提出了一种新的kno 3 -nano 3 -LINO 3 -CA(否 3 2 ·4H 2 O,一定比例,可能是合适的用于集中太阳能技术的高温热能储存。评估其主要热物理性质。在1,200-H暴露于恒定的高温和热冲击循环的不同阶段以不同阶段获得的样品进行热物理试验。结果表明,实现了对热物理性质及其各自的加热时间和热循环的时间变化的全面掌握。熔融盐的热物理性质在实验前后显示出良好的重复性,并且大多数变化在±10%以内。另外,在加热1200h的1200h和1000次的热循环后测量并分析候选的正常温度X射线衍射图。尽管硝酸钙的一部分已经溶解并形成了一种新的解决方案,但这种现象不会影响候选物的性能,这表明了高温耐受性和良好的热稳定性。因此,这种新种类的熔盐热储存材料是大型太阳能热电厂中传热和储能的有希望的候选者。

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