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Spectrally Selective Solar Absorbers based on Ta:SiO2 Cermets for Next-Generation Concentrated Solar-Thermal Applications

机译:基于TA的光谱选择性太阳能吸收剂:用于下一代集中的太阳能热应用的SiO2金属陶瓷

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摘要

An iterative algorithm is used to design a spectrally selective thin-film stack to provide maximum solar-to-thermal conversion efficiency at the very high operating temperatures associated with high solar concentrations. The resulting stack is then fabricated by magnetron sputtering and characterized. It is composed of two Ta:SiO2 layers with differing Ta nanoparticle contents on a refractory metal substrate. A SiO2 antireflecting overlayer completes the stack. Optical and microstructural characterizations indicate that the stack achieves 97.6% solar absorptance up to 900 degrees C. Spectral selectivity and thermal stability improve on annealing in two ways, first, due to recrystallization of Pt or Ta back reflectors which lowers room temperature thermal emittance to 0.15 from 0.18, and to 0.14 from 0.21, respectively; and second, due to alloying of substrate atoms with the Ta nanoparticles of the cermet.
机译:迭代算法用于设计光谱选择性薄膜叠层,以在与高太阳浓度相关的非常高的操作温度下提供最大的太阳能转换效率。 然后通过磁控溅射制造所得叠层并表征。 它由两个TA:SiO 2层组成,难熔金属基材上具有不同的TA纳米粒子内容物。 SiO2反射覆盖器完成堆叠。 光学和微观结构表征表明,堆叠达到97.6%的太阳能吸收率,高达900℃。光谱选择性和热稳定性在两种方式中以两种方式改善退火,首先是由于PT或TA背反射器的重结晶,降低了室温热膨胀率至0.15 从0.18,分别为0.18,分别为0.21; 其次,由于基底原子与金属陶瓷的Ta纳米颗粒合金原子。

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