论文标题

近红外光谱中陶瓷粉末的温度依赖性扩散反射率测量

Temperature-Dependent Diffuse Reflectance Measurements of Ceramic Powders in the Near- and Mid-Infrared Spectra

论文作者

Mayer, J. Michael, Abraham, James A., Kinzer, Bryan, Chandran, Rohini Bala

论文摘要

这项研究的重点是实验测量陶瓷颗粒的近红外和中红外光谱中的温度依赖性扩散反射率,其应用是浓缩太阳能(CSP)植物中的热转移和热存储介质。具体而言,使用傅立叶变换红外光谱仪(FTIR)与专门的散布式反射率和热阶段相结合,测量了商业上烧结的铝土矿陶瓷粉,Accucast ID80及其主要的化学成分氧化铝(AL2O3)和二氧化硅(SIO2)。室温弥漫性反射率测量表明,在陶瓷样品的质量分数较大的测试中吸收增加。在2000-500 cm-1的光谱范围内,测得的ACCUCAST与氧化铝和二氧化硅的反射光谱存在很强的相关性。首次报道了与温度相关的弥漫性反射测量值以进行ACCUCAST,其中包括一种新的技术,用于访问背景材料KBR的限制温度以上的反射率值。所有三种材料在室温下的计算出现率为〜0.9。但是,对于Accucast,该值在1000 C时下降到0.68,氧化铝和二氧化硅的值降至〜0.43。与在4000 cm-1时的反射率增加,从深灰色到浅橙色,空气中的热循环从深灰色变为浅橙色,从深灰色变为浅橙色,与在真空中1000 c的热循环相比,反射率的变化更大。在大气和疏散条件下,氧化铝和二氧化硅光谱在很大程度上不受热循环的影响。

This study focuses on experimentally measuring temperature-dependent diffuse reflectance in the near- and mid-infrared spectra for ceramic particles with applications as heat-transfer and thermal-storage media in concentrated solar power (CSP) plants. Specifically, a commercially available sintered bauxite ceramic powder, ACCUCAST ID80, and its primary chemical constituents, alumina (Al2O3) and silica (SiO2), are measured using a Fourier transform infrared spectrometer (FTIR) coupled with a specialized diffuse reflectance accessory and a heated stage. Room-temperature diffuse reflectance measurements show increased absorption in tests with greater mass fractions of the ceramic samples. There is a strong correlation in the measured reflectance spectra of ACCUCAST with alumina and silica in the spectral range 2000-500 cm-1. For the first time, temperature-dependent diffuse reflectance measurements are reported for ACCUCAST, including a novel technique for accessing reflectance values above the limiting temperature of the background material KBr. All three materials exhibit a calculated emittance of ~0.9 at room temperature. However, this value drops to 0.68 at 1000 C for ACCUCAST and ~0.43 for alumina and silica. Thermal cycling in air from 25 C to 1000 C resulted in a visible color change from dark grey to light orange for ACCUCAST and a subsequent 5X greater increase in reflectance at 4000 cm-1 as compared to ACCUCAST thermally cycled at 1000 C in vacuum. Alumina and silica spectra proved to be largely unaffected by thermal cycling under atmospheric and evacuated conditions.

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