From Performance Measurements to Molecular Level Characterization: Exploring the Differences between Ultraviolet and Damp Heat Weathering of Photovoltaics Modules

Author:

Heidrich Robert12ORCID,Babić Nikola34ORCID,Lacroix‐Andrivet Oscar35ORCID,Dutoit Charles‐Emmanuel46ORCID,Bainier Camille7,Mordvinkin Anton1ORCID,Gottschalg Ralph12ORCID,Vezin Hervé46ORCID,Afonso Carlos58,Pondaven Simon34

Affiliation:

1. Fraunhofer CSP Otto‐Eissfeldt‐Strasse 12 06120 Halle (Saale) Germany

2. Anhalt University of Applied Sciences Bernburger Strasse 55 06336 Koethen (Anhalt) Germany

3. TotalEnergies OneTech Centre de Recherche de Solaize (CRES) Chemin du canal, BP 22 69360 Solaize France

4. Joint Laboratory—CR2ME: Centre de Résonance Magnétique Électronique pour les Matériaux et l’ Énergie 59655 Villeneuve d’Ascq France

5. International Joint Laboratory—iC2MC: Complex Matrices Molecular Characterization TRTG BP 27 76700 Harfleur France

6. Laboratoire Avancé de Spectroscopie pour les Interactions la Réactivité et l’Environnement (LASIRE) Université Lille Nord de France CNRS UMR8516 59655 Villeneuve d’Ascq France

7. TotalEnergies OneTech R&D Power 7‐9 Boulevard Thomas Gobert 91120 Palaiseau France

8. Normandie Univ., COBRA, UMR6014 and FR3038 Université de Rouen INSA de Rouen CNRS, IRCOF 1 rue Tesnière 76821 Mont‐Saint‐Aignan Cedex France

Abstract

The degradation behaviors of the encapsulant and the imbedded additives significantly determine the reliability of solar modules. Nevertheless, a link between the degradation of the encapsulant, including the additive interactions, and the longevity of the overall module is rarely established until now. Herein, mini‐modules containing ethylene‐vinyl acetate copolymer (EVA) as encapsulant are subject to damp heat (DH) or ultraviolet (UV) weathering based on IEC 61215. Macroscopically, the degradation under both weathering types characterized by IV measurements and electroluminescence (EL) measurements is diverging in dependence on the used stressor. Using electron paramagnetic resonance and orbitrap mass spectrometry, it is shown that deacetylation of the EVA occurs significantly for both types of weathering. In the case of DH, however, the mechanism of action of the UV stabilizer is hindered, so that strong encapsulant degradation is observed despite a lower energy input in comparison with UV. Furthermore, the produced acetic acid under DH weathering leads to the observed reduction in EL, an increase in series resistance, and, a reduction of the performance of the modules. The work carried out shows that the degradation of the solar modules is strongly dependent on the behavior of the UV stabilizer.

Publisher

Wiley

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