Review of Mid- to High-Temperature Solar Selective Absorber Materials

Обзор солнечных селективных поглощающих материалов для средних и высоких температур
Cheryl Kennedy
2002-07-01

concentrating solar powerphotothermal conversionsolar selective absorbersspectrally selective surfacesthermal emittance
This report describes the concentrating solar power (CSP) systems using solar absorbers to convert concentrated sunlight to thermal electric power. It is possible to achieve solar absorber surfaces for efficient photothermal conversion having high solar absorptance (a) for solar radiation and a low thermal emittance (e) at the operational temperature. A low reflectance (?'' 0) at wavelengths (?) 3 mm and a high reflectance (?'' 1) at l 3 mm characterize spectrally selective surfaces. The operational temperature ranges of these materials for solar applications can be categorized as low temperature (T< 100 C), mid-temperature (100 C< T< 400 C), and high-temperature (T> 400 C). High- and mid-temperature applications are needed for CSP applications. For CSP applications, the ideal spectrally selective surface would be low-cost and easy to manufacture, chemically and thermally stable in air at elevated operating temperatures (T= 500 C), and have a solar absorptance= 0.98 and a thermal emittance= 0.05 at 500 C.
1
Concentrating solar power systems use solar absorbers to convert concentrated sunlight into thermal electric power.
2
Efficient solar-selective absorbers require high solar absorptance and low thermal emittance at their operating temperature.
3
For CSP applications, ideal absorbers should be low-cost, manufacturable, stable in air at approximately 500 °C, and achieve absorptance of 0.98 with emittance of 0.05 at 500 °C.
4
Solar absorber materials are categorized as low-temperature, mid-temperature, or high-temperature according to operating ranges below 100 °C, 100–400 °C, and above 400 °C, respectively.
5
Spectrally selective surfaces are characterized by low reflectance at wavelengths below 3 mm and high reflectance above 3 mm.

mid- to high-temperature solar selective absorber materials and surfaces for concentrating solar power systems

their spectral selectivity, solar absorptance, thermal emittance, and chemical and thermal stability at elevated operating temperatures

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2002-07-01
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Cheryl Kennedy
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