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Environmental and technical impacts of floating photovoltaic plants as an emerging clean energy technology

iScience 2022 110 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Hamid M. Pouran, Mariana Padilha Campos Lopes, Tainan Nogueira, David Alves Castelo Branco, Yong Sheng

Summary

Researchers reviewed the environmental and technical benefits of floating solar panels installed on water bodies, finding that they generate more electricity than ground-mounted systems, reduce water evaporation, and can be paired with existing hydropower infrastructure. Despite strong growth globally, the technology faces barriers from limited government policy support and unresolved questions about long-term durability of floating structures.

Floating photovoltaic (FPV) plants present several benefits in comparison with ground-mounted photovoltaics (PVs) and could have major positive environmental and technical impacts globally. FPVs do not occupy habitable and productive areas and can be deployed in degraded environments and reduce land-use conflicts. Saving water through mitigating evaporation and improving water security in arid regions combined with the flexibility for deployment on different water bodies including drinking water reservoirs are other advantages of FPVs. They also have higher efficiency than ground-mounted PV solar and are compatible with the existing hydropower infrastructures, which supports diversifying the energy supply and its resilience. Despite the notable growth of FPVs on an international scale, lack of supporting policies and development roadmaps by the governments could hinder FPVs' sustainable growth. Long-term reliability of the floating structures is also one of the existing concerns that if not answered could limit the expansion of this emerging technology.

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