Environmental impacts, pollution sources and pathways of spent lithium-ion batteries

W Mrozik, MA Rajaeifar, O Heidrich… - Energy & Environmental …, 2021 - pubs.rsc.org
There is a growing demand for lithium-ion batteries (LIBs) for electric transportation and to
support the application of renewable energies by auxiliary energy storage systems. This …

Municipal solid waste management and landfilling technologies: a review

S Nanda, F Berruti - Environmental chemistry letters, 2021 - Springer
Abstract The USA, China and India are the top three producers of municipal solid waste. The
composition of solid wastes varies with income: low-to-middle-income population generates …

Valorization of biomass waste to engineered activated biochar by microwave pyrolysis: Progress, challenges, and future directions

SY Foong, RK Liew, Y Yang, YW Cheng… - Chemical Engineering …, 2020 - Elsevier
Biomass waste represents the promising surrogate of fossil fuels for energy recovery and
valorization into value-added products. Among thermochemical conversion techniques of …

Recycling of lithium iron phosphate batteries: Status, technologies, challenges, and prospects

M Wang, K Liu, S Dutta, DS Alessi, J Rinklebe… - … and Sustainable Energy …, 2022 - Elsevier
The limited fossil fuel supply toward carbon neutrality has driven tremendous efforts to
replace fuel vehicles by electric ones. The recycling of retired power batteries, a core energy …

Municipal solid waste landfills in lower-and middle-income countries: Environmental impacts, challenges and sustainable management practices

S Mor, K Ravindra - Process Safety and Environmental Protection, 2023 - Elsevier
Abstract Municipal Solid Waste (MSW) is collected, transported, and disposed of in an
unorganized and disordered manner in lower-and middle-income countries. Improper waste …

Recent progress in sustainable recycling of LiFePO4-type lithium-ion batteries: Strategies for highly selective lithium recovery

J Kumar, RR Neiber, J Park, RA Soomro… - Chemical Engineering …, 2022 - Elsevier
The demand for LiFePO 4 (LFP)-type batteries have increased remarkably in energy storage
devices due to a longer life span, improved discharge and charge efficiency, and safe …

[BOOK][B] Environmental chemistry

SE Manahan - 2022 - taylorfrancis.com
With clear explanations, real-world examples and updated ancillary material, the 11th
edition of Environmental Chemistry emphasizes the concepts essential to the practice of …

[HTML][HTML] Risk management over the life cycle of lithium-ion batteries in electric vehicles

PA Christensen, PA Anderson, GDJ Harper… - … and Sustainable Energy …, 2021 - Elsevier
Lithium-ion Batteries (LIB) are an essential facilitator of the decarbonisation of the transport
and energy system, and their high energy densities represent a major technological …

Facile and efficient recovery of lithium from spent LiFePO 4 batteries via air oxidation–water leaching at room temperature

H **, J Zhang, D Wang, Q **g, Y Chen, C Wang - Green Chemistry, 2022 - pubs.rsc.org
The economical recycling of the spent LiFePO4 batteries in industry is challenging due to its
low lithium recovery rate, and high reagent and wastewater treatment costs. Here, air …

[HTML][HTML] Environmental behavior, human health effect, and pollution control of heavy metal (loid) s toward full life cycle processes

H Deng, Y Tu, H Wang, Z Wang, Y Li, L Chai… - Eco-Environment & …, 2022 - Elsevier
Heavy metal (loid) s (HMs) have caused serious environmental pollution and health risks.
Although the past few years have witnessed the achievements of studies on environmental …