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The investigation of thermal stability of Al/NbMoN/NbMoON/SiO2 solar selective absorbing coating

机译:Al / NBMON / NBMOON / SIO2太阳能选择性吸收涂层热稳定性的研究

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摘要

The thermal stability of the Al/NbMoN/NbMoON/SiO2 solar selective absorbing coatings is investigated to determine its potential applications in concentrated solar power (CSP). The coatings are deposited on stainless steel (SS) substrate by using magnetron reactive sputtering method, which exhibit high solar absorptance (alpha(s) = 0.948) and low thermal emittance (epsilon = 0.11, at 400 degrees C). The coatings are aged (in vacuum and air) at different temperatures and time durations. The aging effect is characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), atomic force microscopy (AFM) and Vis-IR spectroscopy. There is no significant change in surface morphology and spectral selectivity (performance criterion (PC) value is 0.021) of the coating after aging at 500 degrees C for 240 h in vacuum. The coatings also keep high spectral selectivity (PC = 0.034) after aging at 450 degrees C for 200 h in air. Unfortunately, the value of PC increases to 0.161 when the coating is aged at the temperature of 500 degrees C for 200 h in air, which is attributed to diffusion and oxidation in the absorbing layers and degradation of the dense surface morphology and structure, as evidenced by XRD and SEM analysis. These results indicate that the Al/NbMoN/NbMoON/SiO2 coatings is stable up to 500 degrees C in vacuum and below 450 degrees C in air, which means enough thermal stability for potential applications in parabolic trough CSP.
机译:研究了Al / Nbmon / Nbmoon / SiO2太阳能选择性吸收涂层的热稳定性,以确定其浓缩太阳能(CSP)中的潜在应用。通过使用磁控反应溅射方法沉积在不锈钢(SS)基板上的涂层,其具有高太阳能吸收率(α(S)= 0.948)和低热发射率(Epsilon = 0.11,在400℃)上。在不同的温度和时间持续时间下,涂层在不同的温度和时间持续时间上变老化(真空和空气)。老化效果的特征在于X射线衍射(XRD),扫描电子显微镜(SEM),原子力显微镜(AFM)和Vis-IR光谱。表面形貌和光谱选择性没有显着变化(在500℃下老化真空时,涂层的涂层的谱选择性(PC)值为0.021)。在空气中在450℃下老化后,涂层还保持高光谱选择性(PC = 0.034)。遗憾的是,当涂层在500℃的温度下在空气中涂覆时,PC的值增加到0.161,这归因于吸收层中的扩散和氧化和致密表面形态和结构的降解,如证据通过XRD和SEM分析。这些结果表明,Al / Nbmon / Nbmoon / SiO 2涂层在空气中的真空和低于450℃的空气中稳定至500℃,这意味着抛物面槽CSP中的潜在应用的热稳定性足够的热稳定性。

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