Scientific and stakeholder evidence-based assessment: Ecosystem response to floating solar photovoltaics and implications for sustainability

Научно обоснованная оценка с учетом данных заинтересованных сторон: реакция экосистем на плавучие фотоэлектрические установки и последствия для устойчивого развития
Giles Exley, Rebecca R. Hernandez, Trevor Page, Michael Chipps, Stefano Gambro, Matt Hersey, Robert W. Lake, Kali-Stella Zoannou, Alona Armstrong
2021-09-27

Sustainable Development Goalsecosystem servicesfloating solar photovoltaicssystematic reviewwater quality impacts
Floating solar photovoltaic (FPV) installations are increasing globally. However, their interaction with the hosting water body and implications for ecosystem function is poorly understood. Understanding potential impacts is critical as water bodies provide many ecosystem services on which humans rely and are integral for delivering the United Nations Sustainable Development Goals (SDGs). Here, we used scientific evidence from a systematic review and stakeholder expertise, captured through an international survey and a workshop, alongside existing understanding of the role of water bodies in delivering ecosystem services and the SDGs. We found 22 evidence outcomes that indicated potential physical, chemical and biological impacts of FPV on water bodies. Assessment by stakeholders from across sectors indicated that reduced water evaporation is the greatest opportunity, whilst changes to water chemistry, including nitrification and deoxygenation, are the greatest threat. Despite these findings, FPV operators reported no observed water quality or ecosystem impacts. However, only 15% of respondents had performed water quality analysis; visual inspection alone cannot ascertain all water quality impacts. Based on the integration of these findings, we determined that FPV could impact nine ecosystem services. Furthermore, established linkages between ecosystem services and SDGs indicate the potential for impacts on eight SDGs, although whether the impact is positive or negative is likely to depend on FPV design and water body type. Our results further the understanding of the effects of FPVs on host water bodies and may help to ensure the anticipated growth in FPVs minimises threats and maximises opportunities, safeguarding overall sustainability.
1
A systematic review and stakeholder assessment identified 22 potential physical, chemical, and biological impacts of floating solar photovoltaics on host water bodies.
2
Although FPV operators reported no observed water-quality or ecosystem impacts, only 15% had conducted water-quality analyses, limiting confidence in visual assessments.
3
FPV installations could affect nine ecosystem services and potentially influence eight Sustainable Development Goals, with positive or negative effects depending on system design and water-body type.
4
Stakeholders viewed reduced water evaporation as FPV’s greatest opportunity, while altered water chemistry, including nitrification and deoxygenation, was considered the greatest threat.
5
The findings highlight the need to optimize FPV design and monitoring to maximize sustainability benefits while minimizing ecosystem risks.

floating solar photovoltaic (FPV) installations and their hosting water bodies

the physical, chemical, and biological ecosystem responses and associated ecosystem-service and sustainability implications of FPV installations in hosting water bodies

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Publication Date
2021-09-27
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Authors
Giles Exley
Rebecca R. Hernandez
Trevor Page
Michael Chipps
Stefano Gambro
Matt Hersey
Robert W. Lake
Kali-Stella Zoannou
Alona Armstrong
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