将硝酸盐作为相变材料用于中温潜热式储罐的电荷评估

IF 0.5 Q4 PHYSICS, APPLIED
Ismail, Y. I. Widodo, R. A. Rahman
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引用次数: 0

摘要

本研究评估了硝盐混合物作为中温潜存系统(LSS)的相变材料(PCM)的热特性。对两种二元和三元混合物进行了评估,它们表现出不同的热特性。KNO3(0.4)/NaNO3(0.6) 的熔化和潜热容量最高,分别为 223.8 °C 和 161.5 J/g。不过,它的过冷度较高,在 217.6 ℃ 至 251.5 ℃ 之间会发生部分相变,因此不能用于中温 LSS 储罐。NaNO2(0.4)/KNO2(0.53)/NaNO3(0.7)的三元混合物 (TM) 显示出稳定的相变,部分相变最小(22.1 °C),熔融热合适(98.1 J/g)。通过静态热剖析进行的进一步评估表明,TM 在固态可感充电期间具有显著的性能,充电水平指标(CLI)约为 45.3%-49.1%。直到相变结束阶段,TM 的充电率可高达 85.7%。由于该系统可在合适的温度范围内(< 160 °C)有效充电,因此它具有更高的存储容量和合适的性能,适用于各种应用。显微照片观察表明,存在一些分散颗粒和局部团聚现象,这使得相稳定化成为促进稳定相变过程的一种有利方法。TM 可被视为一种适用于中温 LSS 储罐的 PCM,能使太阳能热再生系统更好地运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Charge Assessment for Nitrate-Based Salt as a Phase Change Material for a Medium-Temperature Latent Storage Tank
The present study assesses the heat characteristic of the nitrate-salt mixture as a phase change material (PCM) for a medium-temperature latent storage system (LSS). Two binary and ternary mixtures are evaluated, which demonstrate different thermal behaviour. The highest melting and latent heat capacity is obtained by KNO3(0.4)/NaNO3(0.6) at 223.8 °C and 161.5 J/g. However, it has a higher supercooling degree with a partial phase transition between 217.6 °C and 251.5 °C, making it unfeasible for a medium-temperature LSS tank. The ternary mixture (TM) with NaNO2(0.4)/KNO2(0.53)/NaNO3(0.7) demonstrates a stable phase transition with minimum partial phase transition (22.1 °C) and suitable heat of fusion (98.1 J/g). Further evaluation through static thermal profiling demonstrates that the TM has a notable performance during solid-sensible charge with a charge level indicator (CLI) around 45.3 %–49.1 %. The TM can be charged up to 85.7 % until the end stage of the phase transition. It promotes a better storage capacity with suitable performance since the system can be charged effectively at a suitable temperature range (< 160 °C) for various applications. The micrograph observation indicates some dispersed particles and local agglomeration, which makes phase stabilization as an advantageous method to promote a stable phase change process. The TM can be considered a suitable PCM for a medium-temperature LSS tank that allows for a better solar thermal renewable system operation.
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来源期刊
CiteScore
1.50
自引率
16.70%
发文量
41
审稿时长
5 weeks
期刊介绍: Latvian Journal of Physics and Technical Sciences (Latvijas Fizikas un Tehnisko Zinātņu Žurnāls) publishes experimental and theoretical papers containing results not published previously and review articles. Its scope includes Energy and Power, Energy Engineering, Energy Policy and Economics, Physical Sciences, Physics and Applied Physics in Engineering, Astronomy and Spectroscopy.
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