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- W72829759 abstract "Durability of PV modules is a significant factor for lowering the cost of PV generated electricity. Simply put, the lifetime and sustained performance of a module directly impacts the number of kW-hrs it delivers. One of the major concerns for module durability is corrosion because it can reduce the power output of a module by increasing resistance at the electrical interconnects. Since corrosion is known to be accelerated by the presence of water, several PV module durability studies have focused on the moisture permeability of encapsulation materials used for corrosion protection. Because silicones are known to have relatively high moisture permeation rates, this has lead to the belief that silicones may not be capable of protecting PV modules against corrosion. However silicones have been used in the protection of commercial electronic circuitry for decades. This experience has led to the development of a model of corrosion that has been used to develop commercial silicone products for use in the electronics industry. This model shows that corrosion protection is a combination of effects, and that the moisture permeation is only one factor that influences corrosion protection. This paper not only discusses the corrosion model, but shows actual examples of how silicones have been used to successfully protect PV modules in the past and with Dow Corning® PV-6100 Cell Encapsulant Series." @default.
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- W72829759 date "2010-10-28" @default.
- W72829759 modified "2023-09-23" @default.
- W72829759 title "The Role of Encapsulant Moisture Permeability in the Durability of Solar Photovoltaic Modules" @default.
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- W72829759 doi "https://doi.org/10.4229/25theupvsec2010-4av.3.43" @default.
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