Abstract
AbstractEnergy generated by land-based wind power is expected to play a crucial role in the decarbonisation of the economy. However, with the looming biodiversity and nature crises, spatial allocation of wind power can no longer be considered solely a trade-off against local disamenity costs. Emphasis should also be put on wider environmental impacts, especially if these challenge the sustainability of the renewable energy transition. We suggest a modelling system for selecting among a pool of potential wind power plants (WPPs) by combining an energy system model with a GIS analysis of WPP sites and surrounding viewscapes. The modelling approach integrates monetised local disamenity and carbon sequestration costs and places constraints on areas of importance for wilderness and biodiversity (W&B). Simulating scenarios for the Norwegian energy system towards 2050, we find that the southern part of Norway is the most favourable region for wind power siting when only the energy system surplus is considered. However, when local disamenity costs (and to a lesser extent carbon costs) and W&B constraints are added successively to the scenarios, it becomes increasingly beneficial to site WPPs in the northern part of Norway. We find that the W&B constraints have the largest impact on the spatial distribution of WPPs, while the monetised costs of satisfying these constraints are relatively small. Overall, our results show that there is a trade-off between local disamenities and loss of W&B. Siting wind power plants outside the visual proximity of households has a negative impact on W&B.
Publisher
Springer Science and Business Media LLC
Subject
Management, Monitoring, Policy and Law,Economics and Econometrics
Reference66 articles.
1. IPBES (2019) Global assessment report on biodiversity and ecosystem services of the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services. In: Brondizio ES, Settele J, Díaz S, Ngo HT (eds) IPBES secretariat, Bonn, Germany. https://doi.org/10.5281/zenodo.3831673
2. Arnett EB, May RF (2016) Mitigating wind energy impacts on wildlife: approaches for multiple taxa. Hum-Wildl Interact 10(1):5
3. Bakkestuen V, Erikstad L, Lindhjem H, Magnussen K, Skrindo A, Nybø S, Teien KT (2022) Method to delimit areas impacted by human construction in natural areas: influence areas from construction and infrastructure. (In Norwegian: Metode for avgrensing av areal som påvirkes av nedbygging av natur: Influensområder av nedbygging og inngrep). NINA-report 1989/22
4. Bartlett J, Rusch GM, Kyrkjeeide MO, Sandvik H, Nordén J (2020) Carbon storage in Norwegian ecosystems (revised edition), NINA Report 1774b
5. Bateman IJ, Mace GM (2020) The natural capital framework for sustainably efficient and equitable decision making. Nat Sustain 3(10):776–783
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