A Survey of Decommissioned Photovoltaic Modules from Solar Power Plants in Thailand: Performance and Second Life Opportunities
Four hundred decommissioned solar photovoltaic (PV) modules from nine utility‐scale solar power plants in Thailand have been surveyed on site by means of visual inspection, insulation testing and outdoor current–voltage ( I – V ) curve measurement. These included amorphous silicon (a‐Si), cadmium te...
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Published in: | IEEJ transactions on electrical and electronic engineering Vol. 18; no. 12; pp. 1967 - 1972 |
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Abstract | Four hundred decommissioned solar photovoltaic (PV) modules from nine utility‐scale solar power plants in Thailand have been surveyed on site by means of visual inspection, insulation testing and outdoor current–voltage (
I
–
V
) curve measurement. These included amorphous silicon (a‐Si), cadmium telluride (CdTe), copper indium gallium diselenide (CIGS or CIS) and multi crystalline silicon (multi c‐Si) PV modules after 6–9 years of operation. The most observed visual defect was the permanent edge soiling for all types of PV modules. The degradation rate (DR) for maximum power output (
P
m
) of the PV modules has varied widely, from 1.5%/year to 9%/year. 83% of the total amount of modules in this study still has the
P
m
of above 70% of their initial value, suggesting a potential for second use. Our findings are informative for a further study on PV reliability in the tropics and also can be used to develop mechanisms for handling decommissioned PV modules from solar farms, e.g., screening procedure concerning performance, safety, and reliability aspects before their second life application. © 2023 Institute of Electrical Engineer of Japan and Wiley Periodicals LLC. |
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AbstractList | Four hundred decommissioned solar photovoltaic (PV) modules from nine utility‐scale solar power plants in Thailand have been surveyed on site by means of visual inspection, insulation testing and outdoor current–voltage (
I
–
V
) curve measurement. These included amorphous silicon (a‐Si), cadmium telluride (CdTe), copper indium gallium diselenide (CIGS or CIS) and multi crystalline silicon (multi c‐Si) PV modules after 6–9 years of operation. The most observed visual defect was the permanent edge soiling for all types of PV modules. The degradation rate (DR) for maximum power output (
P
m
) of the PV modules has varied widely, from 1.5%/year to 9%/year. 83% of the total amount of modules in this study still has the
P
m
of above 70% of their initial value, suggesting a potential for second use. Our findings are informative for a further study on PV reliability in the tropics and also can be used to develop mechanisms for handling decommissioned PV modules from solar farms, e.g., screening procedure concerning performance, safety, and reliability aspects before their second life application. © 2023 Institute of Electrical Engineer of Japan and Wiley Periodicals LLC. Four hundred decommissioned solar photovoltaic (PV) modules from nine utility‐scale solar power plants in Thailand have been surveyed on site by means of visual inspection, insulation testing and outdoor current–voltage (I–V) curve measurement. These included amorphous silicon (a‐Si), cadmium telluride (CdTe), copper indium gallium diselenide (CIGS or CIS) and multi crystalline silicon (multi c‐Si) PV modules after 6–9 years of operation. The most observed visual defect was the permanent edge soiling for all types of PV modules. The degradation rate (DR) for maximum power output (Pm) of the PV modules has varied widely, from 1.5%/year to 9%/year. 83% of the total amount of modules in this study still has the Pm of above 70% of their initial value, suggesting a potential for second use. Our findings are informative for a further study on PV reliability in the tropics and also can be used to develop mechanisms for handling decommissioned PV modules from solar farms, e.g., screening procedure concerning performance, safety, and reliability aspects before their second life application. © 2023 Institute of Electrical Engineer of Japan and Wiley Periodicals LLC. |
Author | Jaroensathainchok, Suttinan Pluemkamon, Rangson Sitthiphol, Nopphadol Limmanee, Amornrat Kotesopa, Saifon Udomdachanut, Nuttakarn Hongsingthong, Aswin |
Author_xml | – sequence: 1 givenname: Amornrat surname: Limmanee fullname: Limmanee, Amornrat organization: ENTEC, National Science and Technology Development Agency (NSTDA) 111 Thailand Science Park, Phahonyothin Road, Khlong Nueng, Khlong Luang Pathum Thani 12120 Thailand – sequence: 2 givenname: Nopphadol surname: Sitthiphol fullname: Sitthiphol, Nopphadol organization: ENTEC, National Science and Technology Development Agency (NSTDA) 111 Thailand Science Park, Phahonyothin Road, Khlong Nueng, Khlong Luang Pathum Thani 12120 Thailand – sequence: 3 givenname: Suttinan surname: Jaroensathainchok fullname: Jaroensathainchok, Suttinan organization: ENTEC, National Science and Technology Development Agency (NSTDA) 111 Thailand Science Park, Phahonyothin Road, Khlong Nueng, Khlong Luang Pathum Thani 12120 Thailand – sequence: 4 givenname: Rangson surname: Pluemkamon fullname: Pluemkamon, Rangson organization: ENTEC, National Science and Technology Development Agency (NSTDA) 111 Thailand Science Park, Phahonyothin Road, Khlong Nueng, Khlong Luang Pathum Thani 12120 Thailand – sequence: 5 givenname: Saifon surname: Kotesopa fullname: Kotesopa, Saifon organization: ENTEC, National Science and Technology Development Agency (NSTDA) 111 Thailand Science Park, Phahonyothin Road, Khlong Nueng, Khlong Luang Pathum Thani 12120 Thailand – sequence: 6 givenname: Nuttakarn surname: Udomdachanut fullname: Udomdachanut, Nuttakarn organization: ENTEC, National Science and Technology Development Agency (NSTDA) 111 Thailand Science Park, Phahonyothin Road, Khlong Nueng, Khlong Luang Pathum Thani 12120 Thailand – sequence: 7 givenname: Aswin surname: Hongsingthong fullname: Hongsingthong, Aswin organization: ENTEC, National Science and Technology Development Agency (NSTDA) 111 Thailand Science Park, Phahonyothin Road, Khlong Nueng, Khlong Luang Pathum Thani 12120 Thailand |
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Cites_doi | 10.1016/j.energy.2019.116368 10.1002/tee.23883 10.1109/JPHOTOV.2015.2396360 10.3390/en12244749 10.1016/j.enconman.2015.10.073 10.1016/j.csite.2019.100409 10.1016/j.solener.2019.02.045 10.1016/j.solmat.2017.09.037 10.1109/JPHOTOV.2014.2338051 10.1016/j.enconman.2017.04.075 10.1016/j.renene.2016.10.052 10.1016/j.solener.2019.06.067 10.1039/C6EE02271E 10.1016/j.solener.2018.08.021 10.1016/j.renene.2019.06.160 10.1016/j.renene.2015.11.088 |
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Snippet | Four hundred decommissioned solar photovoltaic (PV) modules from nine utility‐scale solar power plants in Thailand have been surveyed on site by means of... |
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SubjectTerms | Amorphous silicon Cadmium telluride Cadmium tellurides Copper indium gallium selenides Crystal defects Decommissioning Maximum power Photovoltaic cells Power plants Reliability aspects Solar energy Solar power generation Visual observation |
Title | A Survey of Decommissioned Photovoltaic Modules from Solar Power Plants in Thailand: Performance and Second Life Opportunities |
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