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INVESTIGATION OF MOLTEN SALT NANOMATERIAL AS THERMAL ENERGY STORAGE IN CONCENTRATED SOLAR POWER

机译:浓缩盐纳米材料作为聚光太阳能热能存储的研究

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It is a known fact that the solar energy is the most abundant form of renewable source of energy available abundantly in most of the areas. It is relatively the most promising form of renewable energy through which many developed countries like US, Spain are generating electricity using CSP, PV, and other forms of solar cells. This paper mainly focuses on the Concentrated Solar Power (CSP) and about the method of enhancing the Thermal Energy Storage (TES) capacity. Here, we use molten salt as the Heat Transfer Fluid (HTF) as an alternative to mineral oils and other commonly used HTF. The reasons behind using molten salts have also been listed in the paper. The major disadvantage in molten salts as a HTF is their low specific heat capacity compared to mineral oils. The low specific heat capacity of molten salt can be enhanced by dispersing oxide nanoparticles. In this paper, we synthesized molten salt nanomaterials by dispersing oxide nanoparticles in to selcte4d molten salts. Specific heat capacity measurement was performed using a modulated differential scanning calorimeter (MDSC). Hence, we evaluated the use of molten salt nanomaterials as HTF in CSP.
机译:众所周知的事实是,太阳能是大多数地区可利用的可再生能源的最丰富的形式。这是相对最有希望的可再生能源形式,美国,西班牙等许多发达国家正在通过这种方式使用CSP,PV和其他形式的太阳能电池发电。本文主要关注集中式太阳能(CSP)和提高热能存储(TES)容量的方法。在这里,我们使用熔融盐作为传热流体(HTF),以替代矿物油和其他常用的HTF。本文还列出了使用熔融盐的原因。与矿物油相比,作为HTF的熔融盐的主要缺点是比热容量低。熔融盐的低比热容可以通过分散氧化物纳米颗粒来增强。在本文中,我们通过将氧化物纳米粒子分散在其中来选择熔融盐,从而合成了熔融盐纳米材料。使用调制差示扫描量热仪(MDSC)进行比热容测量。因此,我们评估了熔融盐纳米材料在CSP中作为HTF的使用。

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