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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Degradation of the encapsulant polymer in outdoor weathered photovoltaic modules: Spatially resolved inspection of EVA ageing by fluorescence and correlation to electroluminescence
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Degradation of the encapsulant polymer in outdoor weathered photovoltaic modules: Spatially resolved inspection of EVA ageing by fluorescence and correlation to electroluminescence

机译:户外风化光伏模块中密封剂聚合物的降解:通过荧光和与电致发光相关的EVA老化空间分辨检测

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Here we report about the use of spatially resolved fluorescence spectroscopy for non-destructive analysis of encapsulants in outdoor weathered commercial PV modules. Photovoltaic modules with crystalline Si-cells of seven German manufacturers were analyzed after 2 years outdoor weathering in four different climates. For the first time spatially resolved images of the polymer fluorescence for complete photovoltaic modules are reported. The presented results show that the fluorescence intensity and distribution is inhomogeneous within any module. The fluorescence intensity and its spatial distribution depend on the climate, particularly the weathering site. Diffusive processes in the polymer layer between glass and silicon cell can be evaluated with this method. Cracks in the wafer, visible with electroluminescence, show up in spatially resolved fluorescence images as well. The diffusion through the cracks influences the spatial distribution of the fluorescence intensity. Compared to averaging methods, detailed information about the impact of the different degradation factors like UV-irradiation and moisture ingress on the degradation processes can only be obtained using spatially resolved fluorescence measurements. For PV-modules investigated in this study areas can be identified and compared where similar degradation parameters can be assumed. This will allow improving to quantitatively interpret measurement results.
机译:在这里,我们报告了使用空间分辨荧光光谱技术对室外风化的商用PV模块中的密封胶进行无损分析的情况。在四种不同气候条件下,经过2年的室外风化后,对7家德国制造商的带有晶体硅电池的光伏组件进行了分析。首次报道了用于完整光伏模块的聚合物荧光的空间分辨图像。提出的结果表明,荧光强度和分布在任何模块内都是不均匀的。荧光强度及其空间分布取决于气候,尤其是风化场所。用这种方法可以评估玻璃和硅电池之间的聚合物层中的扩散过程。晶片上的裂纹(通过电致发光可见)也显示在空间分辨的荧光图像中。通过裂缝的扩散会影响荧光强度的空间分布。与平均方法相比,只能使用空间分辨荧光测量来获得有关不同降解因子(如紫外线辐射和水分进入)对降解过程影响的详细信息。对于在此研究中研究的光伏组件,可以确定并比较可以假定相似降解参数的区域。这将有助于改进以定量解释测量结果。

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