Degradation of Hydrophobic Anti-soiling Coatings: Correlating Indoor and Outdoor Testing

被引:1
作者
Jones, Luke O. [1 ,2 ]
Bukhari, Farwah [1 ]
Critchlow, Gary [2 ]
Walls, John M. [1 ]
机构
[1] Loughborough Univ, Wolfson Sch Mech Elect & Mfg Engn, Ctr Renewable Energy Syst Technol CREST, Loughborough LE11 3TU, Leics, England
[2] Loughborough Univ, Dept Mat, Loughborough LE11 3TU, Leics, England
来源
2021 IEEE 48TH PHOTOVOLTAIC SPECIALISTS CONFERENCE (PVSC) | 2021年
关键词
Photovoltaics; Hydrophobic; anti-soiling; coatings; durability testing; outdoor exposure; UV exposure; damp heat exposure; degradation; FLUOROPOLYMERS; DUST;
D O I
10.1109/PVSC43889.2021.9518421
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
One of the most important challenges faced by solar asset managers is the accumulation of soiling and cementation on the photovoltaic module glass cover. Soiling attenuates the incident light and can severely reduce the output power. Hydrophobic coatings applied to the cover glass have the potential to reduce the amount of soiling by reducing surface energy and adhesion. Their presence should make the modules easier to clean. However, there are concerns that the currently available coatings degrade in an unacceptably short time of service in the field. It is important that the mechanisms of degradation are understood, with limited time to perform outdoor testing on hydrophobic coatings, accelerated laboratory-based environmental exposure tests are also conducted. This study evaluates the effectiveness of these accelerated environmental exposure tests and compares the degradation mechanisms observed in ultraviolet (UV) and damp heat (DH) exposure, to how they compare and correlate with longterm outdoor counterparts. The results from surface chemical characterisation show that all forms of testing result in a decrease in fluorine. Conversely oxygen and silicon increase over time as the thickness of the hydrophobic film is reduced and more of the glass substrate is exposed as observed in X-ray Photoelectron Spectroscopy. UV exposure was found to cause free radicalization leading to chain scission and detachment of fluorinated functional groups. Likewise, damp heat caused chain scission via hydrolysis. UV degradation was the primary factor of outdoor exposure with added factors such as environmental abrasion causing accelerated damage of the hydrophobic coating.
引用
收藏
页码:912 / 917
页数:6
相关论文
共 21 条
[1]   The effect of tilt angle, air pollution on performance of photovoltaic systems in Tehran [J].
Asl-Soleimani, E ;
Farhangi, S ;
Zabihi, MS .
RENEWABLE ENERGY, 2001, 24 (3-4) :459-468
[2]   HIGH-RESOLUTION MONOCHROMATED X-RAY PHOTOELECTRON-SPECTROSCOPY OF ORGANIC POLYMERS - A COMPARISON BETWEEN SOLID-STATE DATA FOR ORGANIC POLYMERS AND GAS-PHASE DATA FOR SMALL MOLECULES [J].
BEAMSON, G ;
BRIGGS, D .
MOLECULAR PHYSICS, 1992, 76 (04) :919-936
[3]  
BSI Standard, 2017, TERRESTRIAL PHOTOV 1
[4]  
Bukhari F., 2021, OUTDOOR TESTIN UNPUB
[5]   Investigation of damp heat effects on glass properties for photovoltaic applications [J].
Guiheneuf, Vincent ;
Delaleux, Fabien ;
Riou, Olivier ;
Logerais, Pierre-Olivier ;
Durastanti, Jean-Felix .
CORROSION ENGINEERING SCIENCE AND TECHNOLOGY, 2017, 52 (03) :170-177
[6]   Comprehensive review on effect of dust on solar photovoltaic system and mitigation techniques [J].
Gupta, Vinay ;
Sharma, Madhu ;
Pachauri, Rupendra Kumar ;
Babu, K. N. Dinesh .
SOLAR ENERGY, 2019, 191 (596-622) :596-622
[7]  
IEA, 2020, Global EV Outlook 2020 - Entering the Decade of Electric Vehicle Drive?
[8]  
Isbilir K, 2018, WORL CON PHOTOVOLT E, P3426, DOI 10.1109/PVSC.2018.8547272
[9]  
Isbilir K, 2017, IEEE PHOT SPEC CONF, P2827, DOI 10.1109/PVSC.2017.8366246
[10]   Picking One out of Three: Selective Single C-F Activation in Trifluoromethyl Groups [J].
Jaroschik, Florian .
CHEMISTRY-A EUROPEAN JOURNAL, 2018, 24 (55) :14572-14582