Solar Thermal Conversion of Plasmonic Nanofluids: Fundamentals and Applications

Meijie Chen, Xingyu Chen, Dongling Wu
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引用次数: 7

Abstract

Plasmonic nanofluids show great interests for light-matter applications due to the tunable optical properties. By tuning the nanoparticle (NP) parameters (material, shape, and size) or base fluid, plasmonic nanofluids can either absorb or transmit the specific solar spectrum and thus making nanofluids ideal candidates for various solar applications, such as: full spectrum absorption in direct solar absorption collectors, selective absorption or transmittance in solar photovoltaic/thermal (PV/T) systems, and local heating in the solar evaporation or nanobubble generation. In this chapter, we first summarized the preparation methods of plasmonic nanofluids, including the NP preparation based on the top-down and bottom-up, and the nanofluid preparation based on one-step and two-step. And then solar absorption performance of plasmonic nanofluids based on the theoretical and experimental design were discussed to broaden the absorption spectrum of plasmonic nanofluids. At last, solar thermal applications and challenges, including the applications of direct solar absorption collectors, solar PT/V systems, solar distillation, were introduced to promote the development of plasmon nanofluids.
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等离子体纳米流体的太阳热转换:基础和应用
等离子体纳米流体由于具有可调谐的光学特性,在光物质应用中表现出极大的兴趣。通过调整纳米颗粒(NP)参数(材料、形状和大小)或基础流体,等离子体纳米流体可以吸收或透射特定的太阳光谱,从而使纳米流体成为各种太阳能应用的理想候选者,例如:直接太阳能吸收集热器中的全光谱吸收,太阳能光伏/热(PV/T)系统中的选择性吸收或透射,以及太阳能蒸发或纳米气泡产生中的局部加热。在本章中,我们首先总结了等离子体纳米流体的制备方法,包括基于自上而下和自下而上的NP制备方法,以及基于一步和两步的纳米流体制备方法。然后在理论和实验设计的基础上讨论了等离子体纳米流体的太阳吸收性能,拓宽了等离子体纳米流体的吸收光谱。最后介绍了太阳能热的应用和挑战,包括太阳能直接吸收集热器、太阳能PT/V系统和太阳能蒸馏的应用,以促进等离子体纳米流体的发展。
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