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Moisture ingress in photovoltaic modules: A review

机译:光伏模块中的水分进入:综述

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Moisture ingress in photovoltaic (PV) modules is the core of most degradation mechanisms that lead to PV module power degradation. Moisture in EVA encapsulant can lead to metal grids corrosion, delamination and discolouration of encapsulants, potential induced degradation, optical and adhesion losses. The present work is a review of literature on the causes, effects, detection, and mitigation techniques of moisture ingress in PV modules. Literature highlights on determining the diffusivity, solubility, and permeability of polymeric components of PV modules via water vapour transmission rate tests, gravimetric, and immersion methods, have been presented. Electroluminescence, photoluminescence, and ultraviolet fluorescence spectroscopy, as well as dark lock-in thermography are some techniques used to detect moisture ingress in modules. Encapsulants with excellent moisture barrier and adhesion characteristics, desiccant-stacked polyisobutylene sealants, imbedded moisture sensors, and PV designs with/without breathable backsheets are ways of preventing/detecting moisture ingression in PV modules. Areas of focus for future research activities have also been discussed.
机译:光伏(PV)模块中的水分进入是大多数降解机制的核心,导致光伏模块功率降级。 EVA密封剂中的水分可以导致金属网格腐蚀,分层和褪色的密封剂,潜在的诱导降解,光学和粘附损失。目前的作品是对PV模块中水分进入的原因,效果,检测和缓解技术的文献述评。已经介绍了通过水蒸气透射速率试验,重量测定和浸渍方法确定PV模块聚合物组分的扩散性,溶解度和渗透性的文献亮点。电致发光,光致发光和紫外线荧光光谱,以及暗锁定热成像是用于检测模块中的水分进入的一些技术。具有优异的防潮性和粘附特性的密封剂,干燥剂堆叠的聚异丁烯密封剂,嵌入式的湿气传感器和具有/无透气底片的PV设计是预防/检测PV模块中的水分进入的方式。还讨论了未来研究活动的重点领域。

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