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Photothermal testing before and after degradation of nickel-pigmented aluminium oxide selective absorber prepared by alternate and reverse periodic plating technique

机译:通过交替和反向周期性电镀技术制备的镍颜料氧化铝选择性吸收剂降解前后的光热测试

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摘要

The alternate and reverse periodic plating techniques were used to prepare the selective absorber samples. The glazed type-flat plate collector was used for photothermal testing. The calculated absorptivity of the selective absorbers (before degradation) falls in the range 92.0-97.0% and after degradation falls in the range 88.3-92.2%; while emissivity (before degradation) falls in the range 11.0-22.5% and after degradation falls in the range 11.6-23.4%. The maximum calculated net collective flux (before degradation) is in the range 590-699 W/m~(-2) and after degradation is in the range 566.4-664.1 W/m~(-2). The conversion efficiency (before degradation) is in the range 0.73-0.78 and after degradation falls in the range 0.70-0.74. Degradation testing carried out in air at different temperatures: 100℃, 200 ℃, 250 ℃, and 300 ℃. The degradation process leads to a decrease in the solar absorptivity and increase in the thermal emissivity of the films especially at 300 ℃. Different parameters are discussed concerning the photothermal and the degradation testing.
机译:使用交替和反向周期性镀覆技术来制备选择性吸收体样品。釉面平板集热器用于光热测试。选择性吸收剂的计算吸收率(降解前)在92.0-97.0%的范围内,降解后在88.3-92.2%的范围内;而发射率(降解前)在11.0-22.5%范围内,降解后在11.6-23.4%范围内。计算出的最大净集合通量(降解前)在590-699 W / m〜(-2)范围内,降解后则在566.4-664.1 W / m〜(-2)范围内。转化效率(降解前)为0.73-0.78,降解后为0.70-0.74。在不同温度的空气中进行降解测试:100℃,200℃,250℃和300℃。降解过程导致薄膜的太阳吸收率降低,而热发射率升高,尤其是在300℃时。讨论了有关光热和降解测试的不同参数。

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