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Degradation of unglazed rough graphite-aluminium solar absorber surfaces in simulated acid and neutral rain

机译:模拟酸和中性雨中未上釉的粗糙石墨铝太阳能吸收器表面的降解

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摘要

Degradation mechanisms of unglazed solar absorber surfaces based on aluminium substrate were studied. Rough graphite-aluminium surfaces were total-immersion subjected to aerated and de-aerated simulated neutral and acid rain. Test conditions were based on calculated absorber stagnation temperature and global rain acidity measurements. Changes in optical properties, elemental composition and sample mass were examined by spectrometry, energy dispersive X-ray spectrometry and thermogravimetry, respectively. The absorbers exhibited almost no degradation at pH value of 3.5. At pH 5.5 alumina on the surface hydrated significantly degrading the optical properties of the surfaces severely in most cases. Therefore these absorber surfaces can not be recommended to be used in non-glazed applications if they are exposed to rain with pH exceeding ~ 3.5-4.5. The total-immersion test needs to be developed further as the test results exhibited poor temperature and time dependency thus preventing accurate service lifetime estimates. Still, these tests were useful in determining favourable and non-favourable operating conditions for the absorber surfaces based on aluminium substrate.
机译:研究了基于铝基板的无釉太阳能吸收器表面的降解机理。将粗糙的石墨-铝表面完全浸入曝气和除气的模拟中性和酸雨中。测试条件基于计算出的吸收器停滞温度和整体雨水酸度测量值。分别通过光谱法,能量色散X射线光谱法和热重法检查了光学性质,元素组成和样品质量的变化。在pH值为3.5时,吸收剂几乎没有降解。在大多数情况下,pH为5.5时,表面上的氧化铝会水化,从而严重降低表面的光学性能。因此,如果这些吸收器表面暴露在pH值超过〜3.5-4.5的雨中,则不建议在非玻璃应用中使用。由于测试结果显示出较差的温度和时间依赖性,因此需要进一步开发全浸入式测试,从而无法准确估算使用寿命。但是,这些测试对于确定基于铝基材的吸收体表面的有利和不利操作条件仍然有用。

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