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Soiling and cleaning: Initial observations from 5-year photovoltaic glass coating durability study

机译:污染和清洁:5年的光伏玻璃涂层耐久性研究的初始观察

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摘要

The contamination of solar photovoltaic cover glass can significantly reduce the transmittance of light to the surface of the photovoltaic cell, reducing the module's power output. The solar industry has been developing antireflection (AR) and antisoiling (AS) surface coatings to enhance light transmittance and mitigate the impacts of soiling. Although uncoated glass has been field tested for decades, minimal data exist to demonstrate the durability of AR and AS coatings against abrasion and surface erosion, including from: natural weathering, airborne sand, and industry cleaning practices. Coupons 75 mm square of varying types have been field-deployed to gather long-term data on coating durability; the initial results are presented here after 1 year of outdoor exposure near Sacramento, California. Duplicate sets of coupons were cleaned monthly per four different cleaning practices. All coupons demonstrated inorganic soiling as well as microscale biological contamination, regardless of cleaning method. Additionally, full-sized, field-aged modules from other areas of the world presented with similar types of contamination as the field-aged coupons; micrographs and results from genomic sequencing of this contamination are included here. Optical microscopy, scanning electron microscopy, atomic force microscopy/energy-dispersive spectroscopy, surface roughness, transmittance, and surface energy analysis of representative specimens and cleaning practices are presented.
机译:太阳能光伏覆盖玻璃的污染可以显着降低光伏电池表面的光透射率,从而减少模块的功率输出。太阳能行业一直在开发抗反射(AR)和抗腐蚀(AS)表面涂层,以增强透光率并减轻污染的影响。虽然未涂覆的玻璃已经过几十年来测试的,但存在最小的数据来证明AR的耐久性和涂层磨损和表面侵蚀,包括:自然风化,空气砂和工业清洁实践。优惠券75毫米平方的不同类型已经进行了现场 - 部署,以收集涂层耐久性的长期数据;在加利福尼亚州萨克拉门托附近的1年户外接触后,初步结果在此提出。每次四种不同的清洁实践每月清洁一套优惠券。所有优惠券都表现出无机污染以及微观生物污染,无论清洁方法如何。此外,来自世界其他地区的全尺寸,现场老化模块呈现出类似类型的污染物作为现场优惠券;这里包括显微照片和这种污染的基因组测序的结果。介绍了光学显微镜,扫描电子显微镜,原子力显微镜/能量分散光谱,表面粗糙度,透射率和表面能分析以及清洁实践。

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