室内与室外老化:用拉曼光谱研究光伏组件中的聚合物降解

C. Peike, T. Kaltenbach, K. Weiß, M. Koehl
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引用次数: 11

摘要

室内和室外老化试验是光伏组件老化研究的常用方法。但是室内加速老化试验与室外暴露试验的可比性有多大呢?研究了室内和室外试验对全尺寸光伏组件中聚合物降解的影响。光伏组件内聚合物老化是影响组件使用寿命的主要因素之一。黄化、分层或封装弹性模量变化等退化现象可能导致传输损失、腐蚀效应或电池裂纹。拉曼光谱最近被我们的小组报道为一种非破坏性的分析方法,用于包封降解分析。利用拉曼光谱研究了室内和室外老化晶体硅光伏组件封装的降解,并特别关注了降解的空间依赖性。所研究的模块经受了几种不同的加速老化程序,气候条件有系统的变化,温度、湿度和紫外线。相同的模块在不同的气候条件下(干旱、热带、城市和高山)陈化长达三年。观察到封装剂的降解,导致拉曼光谱中的荧光背景增加。发现老化过程与细胞边缘的相对位置有关。老化条件明显影响荧光的空间分布,从而影响聚合物的降解。此外,加速老化试验与室外暴露试验之间存在相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Indoor vs. outdoor aging: polymer degradation in PV modules investigated by Raman spectroscopy
Indoor and outdoor aging tests are common methods for PV module degradation investigation. But to what extend are accelerated indoor aging tests comparable to outdoor exposure tests? The impact of indoor and outdoor tests on the polymer degradation in full-size PV modules was investigated. Polymer aging within a PV module is one of the major factors influencing module performance in the course of its lifetime. Degradation phenomena like yellowing, delamination or changes in the elastic modulus of the encapsulation may lead to transmission losses, corrosion effects or cell cracks. Raman Spectroscopy has recently been reported by our group as a non-destructive, analytical method for encapsulation degradation analysis. The degradation of the encapsulation of indoor and outdoor aged crystalline silicon PV modules was examined by the means of Raman Spectroscopy with special attention to the spatial-dependency of the degradation. The investigated modules were subjected to several different accelerated aging procedures with a systematic variation of the climatic conditions temperature, humidity and UV. Identical modules were aged in different climates (arid, tropical, urban and alpine) for up to three years. The degradation of the encapsulant was observed, resulting in an increasing fluorescence background in the Raman spectra. A dependency of the aging process on the relative position to the edges of the cell was found. The aging conditions appeared to influence the spatial distribution of the fluorescence and therefore, the polymer degradation, markedly. Furthermore, correlations between accelerated aging tests and outdoor exposure tests could be found.
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