Decarbonizing lithium-ion battery primary raw materials supply chain

R Istrate, A Mas-Fons, A Beylot, S Northey, K Vaidya… - Joule, 2024 - cell.com
Decarbonizing the supply chain of raw materials for electric vehicle (EV) batteries is the
ultimate frontier of deep decarbonization in transportation. While circularity is key …

Cradle to gate life-cycle assessment of battery grade nickel sulphate production through high-pressure acid leaching

G Bartzas, K Komnitsas - Science of The Total Environment, 2024 - Elsevier
The rising global demand for high-purity nickel (Ni) sulphate, primarily used in lithium-ion
batteries, is largely met by processing Indonesian laterite ores via hydrometallurgy …

Clean energy demand must secure sustainable nickel supply

R Basuhi, K Bhuwalka, EA Moore, I Diersen, RH Malik… - Joule, 2024 - cell.com
Unprecedented demand for critical energy transition metals will expand global mineral
supply and reshape commodity landscapes. We discuss the opportunity for demand signals …

Healing the battery and the planet: An environmental perspective on self-healing batteries for smartphones

ML Philippot, E Guney, PK Dammala… - Journal of Cleaner …, 2025 - Elsevier
The impact on climate change (CC) of smartphones is expected to rise, due to their short
lifetime and increasing demand. The battery of a smartphone is the component with the …

[PDF][PDF] Life Cycle Sustainability Assessment of Batteries for Electric Vehicles

ML Philippot - 2024 - cris.vub.be
Electric vehicles (EV) are seen as the future of the automotive industry in order to reduce
greenhouse gas (GHG) emissions and batteries are one of the most important components …