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High-temperature air-stable solar absorbing coatings based on the cermet of MoSi2 embedded in SiO2

机译:基于SiO2嵌入MOSI2的金属陶瓷的高温空气稳定太阳能吸收涂层

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摘要

Solar absorbing coating is a critical component in concentrated solar power (CSP) system. How to further decrease costs and enhance thermal stability of coatings is crucial for large-scaled CSP systems. Herein, we present a cost-effective and facile strategy to prepare the MoSi2-SiO2 based coatings, which can survive at 850 degrees C in air for 100 h due to the formation of a SiO2 barrier in cermet that prevents the coatings from further oxidation. The absorbers demonstrate a high absorptance of similar to 95%, and the total efficiency using this absorber could reach 63.5% with the conditions of a solar concentration ratio of C = 1000 at 850 degrees C, which exceeds most of spectrally selective coatings. These results suggest that the MoSi2 SiO2 based absorbing coating would be a potential candidate for a large-scale deployment in high-temperature solar thermal conversion systems.
机译:太阳能吸收涂层是浓缩太阳能(CSP)系统中的关键部件。 如何进一步降低成本,增强涂层的热稳定性对于大型CSP系统至关重要。 在此,我们提出了一种成本效益和容易的策略来制备基于MOSI2-SiO 2的涂层,其在空气中可以在850℃下存活100小时,因为在金属陶瓷中形成了防止涂层进一步氧化的SiO2屏障。 吸收器表现出类似于95%的高吸收率,并且使用该吸收器的总效率可以达到63.5%,其太阳浓度比在850℃下的太阳浓度比的条件超过大部分光谱选择性涂层。 这些结果表明,基于MOSI2 SiO2的吸收涂层是高温太阳能热转换系统中大规模展开的潜在候选者。

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