Flash recycling of graphite anodes

W Chen, RV Salvatierra, JT Li, C Kittrell… - Advanced …, 2023 - Wiley Online Library
The ever‐increasing production of commercial lithium‐ion batteries (LIBs) will result in a
staggering accumulation of waste when they reach their end of life. A closed‐loop solution …

Life cycle greenhouse gas emissions of biodiesel and renewable diesel production in the United States

H Xu, L Ou, Y Li, TR Hawkins… - Environmental Science & …, 2022 - ACS Publications
This study presents a life-cycle analysis of greenhouse gas (GHG) emissions of biodiesel
(fatty acid methyl ester) and renewable diesel (RD, or hydroprocessed easters and fatty …

[HTML][HTML] Global environmental cost of using rare earth elements in green energy technologies

SR Golroudbary, I Makarava, A Kraslawski… - Science of the Total …, 2022 - Elsevier
Decarbonization of economy is intended to reduce the consumption of non-renewable
energy sources and emissions from them. One of the major components of decarbonization …

Techno-economic analysis and life cycle assessment of a biorefinery utilizing reductive catalytic fractionation

AW Bartling, ML Stone, RJ Hanes, A Bhatt… - Energy & …, 2021 - pubs.rsc.org
Reductive catalytic fractionation (RCF) is a promising approach to fractionate lignocellulose
and convert lignin to a narrow product slate. To guide research towards commercialization …

Performance and cost analysis of liquid fuel production from H2 and CO2 based on the Fischer-Tropsch process

G Zang, P Sun, AA Elgowainy, A Bafana… - Journal of CO2 Utilization, 2021 - Elsevier
Electro-fuels can be produced from concentrated sources of carbon dioxide and hydrogen
using electricity generated from renewable sources; this process enables energy storage at …

A framework for determining the life cycle GHG emissions of fossil marine fuels in countries reliant on imported energy through maritime transportation: A case study of …

S Ha, B Jeong, H Jang, C Park, B Ku - Science of The Total Environment, 2023 - Elsevier
This research was motivated to address limitations in the current lifecycle assessment
frameworks with the absence of proper guidelines for developing default lifecycle values of …

[HTML][HTML] Synergy of green energy technologies through critical materials circularity

SR Golroudbary, M Lundström, BP Wilson - Renewable and Sustainable …, 2024 - Elsevier
Synergies between technology flows is essential to balance the consumption of their related
critical materials and promote a sustainable green economy transition. Using dynamics …

Comparative life cycle assessment of conventional combustion engine vehicle, battery electric vehicle and fuel cell electric vehicle in Nepal

A Joshi, R Sharma, B Baral - Journal of Cleaner Production, 2022 - Elsevier
Battery electric vehicles (BEV) and Fuel cell electric vehicles (FCEV) are taking momentum
as an alternative to conventional internal combustion engine vehicles (ICEV). Prospects of …

Technoeconomic and Life Cycle Analysis of Synthetic Methanol Production from Hydrogen and Industrial Byproduct CO2

G Zang, P Sun, A Elgowainy… - Environmental science & …, 2021 - ACS Publications
CO2 capture and utilization provides an alternative pathway for low-carbon hydrocarbon
production. Given the ample supply of high-purity CO2 emitted from ethanol and ammonia …

Techno-economic assessment of renewable methanol from biomass gasification and PEM electrolysis for decarbonization of the maritime sector in California

N de Fournas, M Wei - Energy Conversion and Management, 2022 - Elsevier
At scale, biomass-based fuels are seen as long-term alternatives to conventional shipping
fuels to reduce greenhouse gas emissions in the maritime sector. While the operational …