Solar module packaging : : polymeric requirements and selection / / Michelle Poliskie.

While global demand for photovoltaic (PV) modules has increased approximately 45 percent per year over the past decade, PV modules must be durable and inexpensive to compete with traditional energy resources. Often overlooked as a means to improve solar technology, polymer packaging is not only the...

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Place / Publishing House:Boca Raton, Florida : : CRC Press,, 2011.
Year of Publication:2011
Edition:First edition
Language:English
Physical Description:1 online resource (228 pages)
Notes:Description based upon print version of record.
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245 1 0 |a Solar module packaging :  |b polymeric requirements and selection /  |c Michelle Poliskie. 
246 |a Solar Module Packaging  
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505 0 |a Front Cover; Contents; Preface; Acknowledgments; Chapter 1: Introduction to Polymers; Chapter 2: Certification and Characterization of Photovoltaic Packaging; Chapter 3: Polymer Specifications for Photovoltaic (PV) Packaging and Balance of System (BOS) Components; Chapter 4: Polymer Processing Techniques Used in Photovoltaic Packaging and Balance of Systems (BOS) Component Fabrication; Chapter 5: Economic Theory and Photovoltaic Packaging; Chapter 6: Other Polymeric Applications in Photovoltaic Modules; Appendix A: Conversion Factors and Common Units of Measurement; Appendix B: Glossary 
505 8 |a Back Cover 
520 |a While global demand for photovoltaic (PV) modules has increased approximately 45 percent per year over the past decade, PV modules must be durable and inexpensive to compete with traditional energy resources. Often overlooked as a means to improve solar technology, polymer packaging is not only the key to protecting fragile solar cells from environmental factors, but is also the critical path for increasing the power performance of a PV module. Solar Module Packaging: Polymeric Requirements and Selection explores current and future opportunities in PV polymeric packa 
546 |a English 
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