The potential role of a hydrogen network in Europe F Neumann, E Zeyen, M Victoria, T Brown
Joule 7 (8), 1793-1817, 2023
140 2023 Speed of technological transformations required in Europe to achieve different climate goals M Victoria, E Zeyen, T Brown
Joule 6 (5), 1066-1086, 2022
111 2022 Mitigating heat demand peaks in buildings in a highly renewable European energy system E Zeyen, V Hagenmeyer, T Brown
Energy 231, 120784, 2021
68 2021 Endogenous learning for green hydrogen in a sector-coupled energy model for Europe E Zeyen, M Victoria, T Brown
Nature communications 14 (1), 3743, 2023
50 2023 Are biofuel mandates cost-effective?-An analysis of transport fuels and biomass usage to achieve emissions targets in the European energy system M Millinger, L Reichenberg, F Hedenus, G Berndes, E Zeyen, T Brown
Applied Energy 326, 120016, 2022
34 2022 Temporal regulation of renewable supply for electrolytic hydrogen E Zeyen, I Riepin, T Brown
Environmental Research Letters 19 (2), 024034, 2024
24 2024 Distributed photovoltaics provides key benefits for a highly renewable European energy system P Rahdan, E Zeyen, C Gallego-Castillo, M Victoria
Applied Energy 360, 122721, 2024
19 2024 Hourly versus annually matched renewable supply for electrolytic hydrogen E Zeyen, I Riepin, T Brown
December. https://zenodo. org/record/7457441#. ZCFX1XZBw2z, 2022
17 2022 Benefits of a hydrogen network in Europe F Neumann, E Zeyen, M Victoria, T Brown
Available at SSRN 4173442, 2022
16 2022 Speed of technological transformations required in Europe to achieve different climate goals. Joule 6, 1066–1086 M Victoria, E Zeyen, T Brown
10 2022 Diversity of biomass usage pathways to achieve emissions targets in the European energy system M Millinger, F Hedenus, L Reichenberg, E Zeyen, F Neumann, G Berndes
9 2023 PyPSA-Eur: An open sector-coupled optimisation model of the European energy system T Brown, M Victoria, E Zeyen, F Hofmann, F Neumann, M Frysztacki, ...
Zenodo, 2023
8 2023 Speed of technological transformations required in Europe to achieve different climate goals. Joule 2022; 6 (5): 1066–86 M Victoria, E Zeyen, T Brown
6 The potential role of a hydrogen network in Europe, Joule 7 (8)(2023) 1793–1817 F Neumann, E Zeyen, M Victoria, T Brown
5 The potential role of a hydrogen network in Europe. Joule 2023; 7 (8): 1793–817 F Neumann, E Zeyen, M Victoria, T Brown
5 Speed of technological transformations required in Europe to achieve different climate goals. Joule 2022; 6: 1066–86 M Victoria, E Zeyen, T Brown
5 Speed of technological transformations required in Europe to achieve different climate goals (2022) M Victoria, E Zeyen, T Brown
arXiv preprint arXiv:2109.09563, 0
5 H and CO Network Strategies for the European Energy System F Hofmann, C Tries, F Neumann, E Zeyen, T Brown
arXiv preprint arXiv:2402.19042, 2024
2 2024 Long-Term Benefits of Network Boosters for Renewables Integration and Corrective Grid Security AS Gazafroudi, E Zeyen, M Frysztacki, F Neumann, T Brown
arXiv preprint arXiv:2112.06667, 2021
2 2021 Reviewing the complexity of endogenous technological learning for energy system modeling J Behrens, E Zeyen, M Hoffmann, D Stolten, JM Weinand
Advances in Applied Energy, 100192, 2024
1 2024