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Session 2.14: LCA & LCM for Improved Energy Decision-Making Part II
Time:
Thursday, 11/Sept/2025:
2:30pm - 4:00pm
Session Chair: Luka Smajila , KTH - Royal Institute of Technology, SwedenSession Chair: Ketan Vaidya , ex-Northvolt AB, Sweden
Presentations
(15 minutes_S) Life-cycle assessment of thermal energy storage in buildings
Haoyang Dong , Maryna Henrysson, Luka Smajila, Saman Nimali Gunasekara, Justin Ningwei Chiu
KTH Royal Institute of Technology, Sweden
(15 minutes) Who will benefit from second-life batteries? Life Cycle Assessment of Battery Energy Storage Systems
Julia Lindholm1 , Zackarias Heydorn1 , Gustav Dahlberg1 , Elham Moghaddam1 , Niklas Thulin2 , Siri Willskytt 2
1 IVL Swedish Environmental Research Institute; 2 Volvo Energy
(15 minutes) Multi-criteria assessment of hydrogen delivery options: including accident impacts into LCA
Alessandro Arrigoni , Erik Smedberg
JRC, Netherlands, The
(15 minutes) Comparative analysis of energy storage technologies to compare batteries, hydrogen storage, and thermal energy storage through energy flow simulations
Ayumi Yamaki , Shoma Fujii, Yuichiro Kanematsu, Yasunori Kikuchi
The University of Tokyo, Japan
(Short Oral + Poster) Bringing wind energy models up to speed: Updated life cycle inventory data for on- and offshore wind energy generation
Hanna Kröhnert, Alena Frehner , Matthias Stucki
Institute of Natural Resource Sciences, Zurich University of Applied Sciences, 8820 Wädenswil, Switzerland
(Short Oral + Poster) Power-to-X or storage of CO2 after capture from a waste-to-energy system?
Ingunn Saur Modahl , Hanne Lerche Raadal
NORSUS - Norwegian Institute for Sustainability Research, Norway
(Short Oral + Poster) How should lifecycle design and technological research be integrated? ; Case study on thermal energy storage
Shoma Fujii , Yasunori Kikuchi
The University of Tokyo, Japan
(Short Oral + Poster) The water consumption in northern Chilean photovoltaic power: a first approach
Mabel Vega-Coloma
Universidad del Bio-Bío, Chile
(6 minutes) Environmental Sustainability of Solar Energy Systems:Comparison of eco-designed solutions of Silicon Heterojunction Technology Solar Panels
Lieselot Boone 1 , Rhani Bostyn1 , Beatrice Brevet2 , Nouha Gazbour2 , Alexis Barrou3 , Selin Kandiyoti Eskenazi3 , Ricardo Magdalena1 , Jo Dewulf1
1 Department of Green Chemistry and Technology, Faculty of Bioscience Engineering, Ghent University, Ghent, Belgium; 2 Univ. Grenoble Alpes, CEA, Liten, Campus Ines, Le Bourget du Lac, France; 3 CSEM, Neuchâtel, Switzerland