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首页> 外文期刊>Journal of Nanoelectronics and Optoelectronics >Improving the Outdoor Performance of Silicon Photovoltaic Modules Using Ambient-Curing Antireflective Coatings
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Improving the Outdoor Performance of Silicon Photovoltaic Modules Using Ambient-Curing Antireflective Coatings

机译:使用环境固化抗反射涂层改善硅光伏模块的户外性能

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摘要

Most photovoltaic modules are currently fabricated using heat-treated glass coated with antireflective layers. However, although such coatings increase the power output of crystalline silicon modules by 2-3% under standard conditions, commercially fabricated photovoltaic modules with antireflective coatings suffer from progressive soiling and degradation of antireflective layers caused by ultraviolet irradiation or chemical reactions, with its extent depending on various environmental conditions. Importantly, simple surface cleaning of the thus soiled modules with water cannot recover the initial performance of their antireflective coatings. To find a solution to this problem, we herein analyze the effect of re-coating modules at laboratory and field conditions with ambient-curing silica-based antireflective agents, revealing that the average power output of the thus treated modules increases by 2.6 similar to 3% compared to that of modules stripped of their antireflective coatings. Thus, although the lifetime of antireflective coatings cannot be precisely estimated, the above re-coating strategy can effectively restore or even increase the power output of soiled modules.
机译:目前使用大多数光伏模块使用涂有抗反射层的热处理玻璃制造。然而,尽管在标准条件下,这种涂层在标准条件下将晶体硅模块的功率输出增加了2-3%,但具有抗反射涂层的商业制造的光伏模块患有由紫外线照射或化学反应引起的抗反射层的渐进污染和降解,其程度取决于在各种环境条件下。重要的是,用水的简单表面清洁如此染色的模块不能恢复其抗反射涂层的初始性能。为了找到解决这个问题的解决方案,在本文中,我们在实验室和现场条件下分析了具有环境固化的二氧化硅基抗反射剂的实验室和现场条件的影响,揭示了如此处理的模块的平均功率输出增加2.6类似于3 %与剥离其抗反射涂层的模块相比。因此,尽管不能精确地估计抗反射涂层的寿命,但是上述重新涂覆的策略可以有效地恢复或甚至增加污染模块的功率输出。

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