A renewable and socially accepted energy system for astronomical telescopes
Publication date
2024-12
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Article
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taverne
Abstract
Remote astronomical telescopes without access to the national electricity grid are usually designed to rely on fossil fuels without considering the social and energy needs of the surrounding communities. Concurrently, climate change concerns and fuel price vulnerability are driving the transition to renewable energy sources. Here we propose a socially accepted renewable energy system for a future telescope in the Atacama Desert, combining an energy system model with a participatory multi-criteria analysis. Our findings highlight the fact that various stakeholders, including local residents, the municipality, the existing local utility and observatories, prioritize emissions reduction, security of supply and reduced electricity costs. The results reveal that a system supplying renewable energy to the telescope could also cover 66% of a nearby community’s energy needs without additional capacity. Stakeholder inputs show that this is the most attractive solution by developing an energy system in which all the actors benefit. Replicating similar energy systems at nearby telescopes could reduce fossil fuel-based energy generation by 30 GWh annually, cutting emissions by 18–24 ktCO2e while contributing to energy justice. The proposed approach aims to promote social acceptance of renewable energy systems by involving stakeholders in the decision-making process, integrating benefit sharing among them and contributing to the region’s emissions reduction efforts.
Keywords
Taverne, Global and Planetary Change, Food Science, Geography, Planning and Development, Ecology, Renewable Energy, Sustainability and the Environment, Urban Studies, Nature and Landscape Conservation, Management, Monitoring, Policy and Law, SDG 7 - Affordable and Clean Energy, SDG 13 - Climate Action
Citation
Valenzuela-Venegas, G, Lode, M L, Viole, I, Felice, A, Martinez Alonso, A, Ramirez Camargo, L, Sartori, S & Zeyringer, M 2024, 'A renewable and socially accepted energy system for astronomical telescopes', Nature Sustainability, vol. 7, no. 12, pp. 1642-1650. https://doi.org/10.1038/s41893-024-01442-3