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Anomalous Increase in Specific Heat of Binary Molten Salt-Based Graphite Nanofluids for Thermal Energy Storage

机译:基于二元熔盐的石墨纳米流体的异常升高,用于热储能

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摘要

An anomalous increase of the specific heat was experimentally observed in molten salt nanofluids using a differential scanning calorimeter. Binary carbonate molten salt mixtures were used as a base fluid, and the base salts were doped with graphite nanoparticles. Specific heat measurements of the nanofluids were performed to examine the effects of the composition of two salts consisting of the base fluid. In addition, the effect of the nanoparticle concentration was investigated as the concentration of the graphite nanoparticles was varied from 0.025 to 1.0 wt %. Moreover, the dispersion homogeneity of the nanoparticles was explored by increasing amount of surfactant in the synthesis process of the molten salt nanofluids. The results showed that the specific heat of the nanofluid was enhanced by more than 30% in the liquid phase and by more than 36% in the solid phase at a nanoparticle concentration of 1 wt %. It was also observed that the concentration and the dispersion homogeneity of nanoparticles favorably affected the specific heat enhancement of the molten salt nanofluids. The dispersion status of graphite nanoparticles into the salt mixtures was visualized via scanning electron microscopy. The experimental results were explained according to the nanoparticle-induced compressed liquid layer structure of the molten salts.
机译:使用差示扫描量热计在熔盐纳米流体中实验观察特异性热量的异常增加。二元碳酸盐熔融盐混合物用作基础流体,并用石墨纳米颗粒掺杂底盐。进行纳米流体的特异性热测量以检查由基础液组成的两个盐的组成的作用。另外,研究了纳米颗粒浓度的效果,因为石墨纳米颗粒的浓度从0.025〜1.0wt%变化。此外,通过增加熔盐纳米流体的合成过程中的表面活性剂量来探索纳米颗粒的分散均匀性。结果表明,纳米流体的比热量在液相中提高了大于30%,在固相的纳米颗粒浓度为1wt%的固相中提高了36%。还观察到纳米颗粒的浓度和分散均匀性有利地影响了熔盐纳米流体的特异性热增强。通过扫描电子显微镜观察石墨纳米粒子的分散状态在盐混合物中。根据纳米颗粒诱导的熔融盐的压缩液体层结构来解释实验结果。

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  • 作者

    Hyun Kim; Byeongnam Jo;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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