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Seasonal Energy Storage Potential Assessment of WWTPs with Power-to-Methane Technology

Csedő, Zoltán ORCID: https://orcid.org/0000-0002-0303-5511, Sinóros-Szabó, Botond and Zavarkó, Máté ORCID: https://orcid.org/0000-0003-2450-1873 (2020) Seasonal Energy Storage Potential Assessment of WWTPs with Power-to-Methane Technology. Energies, 13 (18). DOI 10.3390/en13184973

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Official URL: https://doi.org/10.3390/en13184973


Abstract

Power-to-methane technology (P2M) deployment at wastewater treatment plants (WWTPs) for seasonal energy storage might land on the agenda of decision-makers across EU countries, since large WWTPs produce a notable volume of biogas that could be injected into the natural gas grid with remarkable storage capacities. Because of the recent rapid increase of local photovoltaics (PV), it is essential to explore the role of WWTPs in energy storage and the conditions under which this potential can be realized. This study integrates a techno-economic assessment of P2M technology with commercial/investment attractiveness of seasonal energy storage at large WWTPs. Findings show that a standardized 1 MWel P2M technology would fit with most potential sites. This is in line with the current technology readiness level of P2M, but increasing electricity prices and limited financial resources of WWTPs would decrease the commercial attractiveness of P2M technology deployment. Based on a Hungarian case study, public funding, biomethane feed-in tariff and minimized or compensated surplus electricity sourcing costs are essential to realize the energy storage potential at WWTPs.

Item Type:Article
Uncontrolled Keywords:seasonal energy storage; power-to-methane; wastewater treatment plants; technoeconomic assessment
Divisions:Faculty of Business Administration > Institute of Management > Department of Management and Organization
Subjects:Energy economy
Ecology
Environmental economics
DOI:10.3390/en13184973
ID Code:10819
Deposited By: MTMT SWORD
Deposited On:20 Jan 2025 14:58
Last Modified:20 Jan 2025 14:58

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