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The Influence of Mixing Water on the Thermophysical Properties of Nanofluids Based on Solar Salt and Silica Nanoparticles

机译:基于太阳盐和二氧化硅纳米粒子的纳米流体热物理性能混合水的影响

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The use of nanofluids (NFs) based on Solar Salt (SS) and nanoparticles (NPs), either as Thermal Energy Storage (TES) material or as Heat Transfer Fluid (HTF), is attracting great interest in recent years. Many authors [1,3] have reported important improvements on the thermophysical properties (specific heat capacity c_p, thermal conductivity k) of NFs based on SS and ceramic NPs. These improvements would lead to important savings and better performance of TES facilities on new Concentrated Solar Power (CSP) plants due to lower quantities of material required and smaller storage tanks. To achieve these advantageous features in the final NFs, it is essential to avoid NP agglomeration during their preparation. Different synthesis procedures have been reported: mixing of solid NPs within a SS solution by means of ultrasounds [1-3], direct mixing of solid NPs and molten salt [4]. In this work, NFs based on SS and 1% by wt. of silica NPs were synthetized from a SS-water solution and a commercial water-silica NF called Ludox HS 30% (Sigma-Aldrich). The influence of the mixing water volume (MW) on the c_p of NFs was evaluated. With this aim, the c_p of these samples was measured by Differential Scanning Calorimetry (DSC) both in the solid and the liquid state. In addition, the distribution of sizes was measured during the whole preparation process by Dynamic Light Scattering (DLS). Further information about sizes and uniformity of the final NFs was obtained from Scanning Electron Microscopy (SEM) images. X-ray Diffraction (XRD) patterns of the SS and final NF were performed.
机译:基于太阳能盐(SS)和纳米颗粒(NPS)的纳米流体(NFS)用作热能储存(TES)材料或传热液(HTF),近年来吸引了极大的兴趣。许多作者[1,3]报道了基于SS和陶瓷NPS的NFS热神族性质(比热容C_P,导热性K)的重要改进。由于需要较低的材料和较小的储罐,这些改进将导致新的集中太阳能(CSP)植物上的TES设施的重要节省和更好的性能。为了在最终NFS中实现这些有利的特征,必须在其制备过程中避免NP附聚。已经报道了不同的​​合成程序:通过超声波[1-3],直接混合固体NP和熔融盐[4],在SS溶液中混合固体NPS [4]。在这项工作中,NFS基于SS和1%的WT。从SS-水溶液中合成二氧化硅NPS,并称为Ludox HS 30%(Sigma-Aldrich)的商业水 - 二氧化硅NF。评价混合水体积(MW)对NFS C_P的影响。为此目的,通过固体和液态差示扫描量热法(DSC)测量这些样品的C_P。此外,通过动态光散射(DLS)在整个制备过程中测量尺寸的分布。从扫描电子显微镜(SEM)图像获得有关最终NFS的大小和均匀性的更多信息。进行SS和最终NF的X射线衍射(XRD)图案。

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