Nanoparticles Based Single and Tandem Stable Solar Selective Absorber Coatings with Wide Angular Solar Absorptance

K. Phani Kumar, S. Mallick, S. Sakthivel
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引用次数: 8

Abstract

Solar selective absorber coatings with wide angular solar absorptance aids in attaining high photothermal conversion efficiency for solar thermal systems. In this regard, nanoparticles-based absorber coatings were developed on SS 304 by combining the impregnation method, solvothermal process, and dip-coating technique. Developed nanocomposite (SiO 2 nanoparticles in transition metal oxide matrix) based single layer absorber coating with nano void textured surface, exhibits solar absorptance of 0.92 and spectral emittance of 0.12. MgF 2 nanoparticles based anti-reflective layer on single-layer absorber coating improves the solar absorptance to 0.94 by destructive interference mechanism. Both nanoparticles based single and tandem absorber coatings show wide angular solar absorptance of 0.88 and 0.89, respectively, at an incident angle of 50°. Besides, developed absorber coatings show lower thermal emissivity of 0.17 and good photothermal conversion efficiencies at high operating temperatures (400 - 500 °C). These developed absorber coatings offer excellent thermal stability at an open atmospheric condition till operating temperature, such as 400 °C for 100 h. Selective nature with wide angular solar absorptance and low heat loss behaviour of stable absorber coating shows the photothermal conversion efficiency of 91% can improve the performance of receiver tubes in solar thermal systems.
具有广角太阳吸收能力的纳米颗粒单、串联稳定太阳能选择性吸收膜
具有广角太阳能吸收率的太阳能选择性吸收涂层有助于太阳能热系统获得较高的光热转换效率。为此,将浸渍法、溶剂热法和浸涂技术相结合,在SS 304上研制了纳米颗粒基吸收剂涂层。研制了纳米复合材料(过渡金属氧化物基体中的二氧化硅纳米颗粒)单层吸收涂层,其表面具有纳米空洞织构,太阳吸收率为0.92,光谱发射率为0.12。单层吸收体涂层上基于mgf2纳米颗粒的减反射层通过相消干涉机制将太阳吸收率提高到0.94。当入射角度为50°时,纳米颗粒单层和串联吸收膜的宽角太阳吸收率分别为0.88和0.89。此外,所开发的吸收剂涂层在高工作温度(400 - 500°C)下具有较低的热辐射率0.17和良好的光热转换效率。这些开发的吸收涂层在开放大气条件下具有优异的热稳定性,直到工作温度,例如400°C 100小时。稳定的吸收涂层具有广角太阳能吸收的选择性和低热损失行为,表明光热转换效率为91%,可以提高太阳能热系统中接收管的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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