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Enhanced Specific Heat Capacity of Nanomaterials Synthesized by Dispersing Silica Nanoparticles in Eutectic Mixtures

机译:通过在共晶混合物中分散二氧化硅纳米颗粒而合成的纳米材料增强的比热容

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Anomalous enhancements in the specific heat capacity values of nanomaterials were measured in this study. Silica nanoparticles (~2-20 nm) were dispersed into eutectic of lithium carbonate and potassium carbonate (62:38 by molar ratio) at 1.5% mass concentration. The specific heat capacity measurements were performed using a differential scanning calorimeter (DSC). The specific heat capacity of the silica nanocomposite (solid phase) was enhanced by 38-54% and the specific heat of the silica nanofluid (liquid phase) was enhanced by 118-124% over that of the pure eutectic. Electron microscopy of the samples shows that the nanoparticles induce phase change (forms a higher density "compressed phase"') within the solvent material. Hence, a new model is proposed to account for the contribution of the compressed phase to the total specific heat capacity of the nanomaterials. The proposed model is found to be in good agreement with the experimental data. These results have wide ranging implications, such as for the development of efficient thermal storage systems that can enable significant reduction in the cost of solar thermal power.
机译:在这项研究中测量了纳米材料的比热容值的异常增强。将二氧化硅纳米粒子(约2-20 nm)以1.5%的质量浓度分散到碳酸锂和碳酸钾(摩尔比为62:38)的低共熔物中。使用差示扫描量热仪(DSC)进行比热容测量。与纯共晶相比,二氧化硅纳米复合材料(固相)的比热提高了38-54%,二氧化硅纳米流体(液相)的比热提高了118-124%。样品的电子显微镜观察表明,纳米颗粒在溶剂材料内引起相变(形成更高密度的“压缩相”)。因此,提出了一种新模型来考虑压缩相对纳米材料的总比热容的贡献。发现所提出的模型与实验数据非常吻合。这些结果具有广泛的含义,例如对于开发可以显着降低太阳能热发电成本的高效热存储系统。

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