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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >2D MoSe2-based nanofluids prepared by liquid phase exfoliation for heat transfer applications in concentrating solar power
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2D MoSe2-based nanofluids prepared by liquid phase exfoliation for heat transfer applications in concentrating solar power

机译:基于MOSE2的纳米流体,通过液相去角质制备用于浓缩太阳能的传热应用

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摘要

Concentrating solar power (CSP) is one of the most promising environmentally-friendly sources of energy for meeting global energy demands. One line of research intended to improve this kind of solar plants involves increasing the efficiency of the heat transfer fluid (HTF) used, one option being the use of nanofluids. Consequently, this study involves a methodology based on liquid phase exfoliation to prepare stable nanofluids based on 2D MoSe2. A surfactant was used to modify the ratio of the components of the fluid's surface tension in order to obtain a stable nanofluid. Five nanofluids were prepared based on MoSe2 nanosheets, Dowtherm A heat transfer fluid and the Triton X-100 surfactant. The stability of the nanofluids was analysed for a month. Lastly, their thermal properties were characterized. The best nanofluid presented improvements of 7% in isobaric specific heat, 4% in diffusivity and 11% in thermal conductivity. Therefore, these nanofluids would appear to provide a good starting point for creating an alternative to the conventional HTFs used in thermosolar plants. The study highlights the importance of optimizing the parameters of the ratio of the surface tension components, the kind of surfactant added and the methodology used to prepare the nanofluid.
机译:集中太阳能(CSP)是满足全球能源需求的最有前途的环保能源之一。旨在改善这种太阳能厂的一系列研究涉及提高使用的传热液(HTF)的效率,一种选择是使用纳米流体的选择。因此,该研究涉及基于液相去角质的方法,以制备基于2D MOSE2的稳定纳米流体。使用表面活性剂来改变流体表面张力的组分的比例以获得稳定的纳米流体。基于MOSE2纳米蛋白,Dowtherm A传热流体和Triton X-100表面活性剂制备五种纳米流体。分析了纳米流体的稳定性一个月。最后,其热性质的特征在于。最佳的纳米流体呈现出在同级特异性热量的7%,扩散率为4%,导热率为11%。因此,这些纳米流体似乎提供了一种良好的起点,用于产生热溶解植物中使用的常规HTF的替代物。该研究突出了优化表面张力组分的比例的参数,添加的表面活性剂和制备纳米流体的方法的重要性。

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