Regeneration and reuse of anode graphite from spent lithium-ion batteries with low greenhouse gas (GHG) emissions
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Jun Liu | Xubiao Luo | Hui Shi | Genping Yi | Yanni Geng | Ke Yu | X. Hu | Jianzhi Zhang
[1] Hongwei Mi,et al. Hydroxylamine mediated Fenton-like interfacial reaction dynamics on sea urchin-like catalyst derived from spent LiFePO4 battery. , 2022, Journal of hazardous materials.
[2] M. Lundström,et al. Simulation-based life cycle assessment for hydrometallurgical recycling of mixed LIB and NiMH waste , 2021, Resources, Conservation and Recycling.
[3] A. Razmjou,et al. Lithium bioleaching: An emerging approach for the recovery of Li from spent lithium ion batteries. , 2021, Chemosphere.
[4] Hongwei Mi,et al. High-efficiency core-shell magnetic heavy-metal absorbents derived from spent-LiFePO4 Battery. , 2021, Journal of hazardous materials.
[5] Wei Sun,et al. A green and facile approach for regeneration of graphite from spent lithium ion battery , 2020 .
[6] M. Srinivasan,et al. Recycling of cathode from spent lithium iron phosphate batteries. , 2020, Journal of hazardous materials.
[7] P. Gottesfeld. Commentary health risks from climate fix: The downside of energy storage batteries. , 2019, Environmental research.
[8] Wenqing Zhao,et al. A process for combination of recycling lithium and regenerating graphite from spent lithium-ion battery. , 2019, Waste management.
[9] V. Aravindan,et al. Burgeoning Prospects of Spent Lithium‐Ion Batteries in Multifarious Applications , 2018, Advanced Energy Materials.
[10] Dawei Song,et al. Effective regeneration of anode material recycled from scrapped Li-ion batteries , 2018, Journal of Power Sources.
[11] S. Natarajan,et al. Environmental benign synthesis of reduced graphene oxide (rGO) from spent lithium-ion batteries (LIBs) graphite and its application in supercapacitor , 2018 .
[12] Zhenhong Ma,et al. From spent graphite to amorphous sp 2 +sp 3 carbon-coated sp 2 graphite for high-performance lithium ion batteries , 2018 .
[13] Jiadong Yu,et al. A promising physical method for recovery of LiCoO2 and graphite from spent lithium-ion batteries: Grinding flotation , 2018 .
[14] Hongbin Cao,et al. Efficient reuse of anode scrap from lithium-ion batteries as cathode for pollutant degradation in electro-Fenton process: Role of different recovery processes , 2017 .
[15] Arumugam Manthiram,et al. An Outlook on Lithium Ion Battery Technology , 2017, ACS central science.
[16] Feng Wu,et al. Preparation of MnO2-Modified Graphite Sorbents from Spent Li-Ion Batteries for the Treatment of Water Contaminated by Lead, Cadmium, and Silver. , 2017, ACS applied materials & interfaces.
[17] Yong-guan Zhu,et al. Microbial mediated arsenic biotransformation in wetlands , 2017, Frontiers of Environmental Science & Engineering.
[18] M. Winter,et al. Graphite Recycling from Spent Lithium-Ion Batteries. , 2016, ChemSusChem.
[19] Haochen Zhu,et al. Leaching lithium from the anode electrode materials of spent lithium-ion batteries by hydrochloric acid (HCl). , 2016, Waste Management.
[20] Jun Lu,et al. Mg-Enriched Engineered Carbon from Lithium-Ion Battery Anode for Phosphate Removal. , 2016, ACS applied materials & interfaces.
[21] W. Zhou,et al. From graphite to porous graphene-like nanosheets for high rate lithium-ion batteries , 2015, Nano Research.
[22] Jinhui Li,et al. Spent rechargeable lithium batteries in e-waste: composition and its implications , 2014, Frontiers of Environmental Science & Engineering.
[23] F. Kang,et al. Mildly expanded graphite for anode materials of lithium ion battery synthesized with perchloric acid , 2014 .
[24] Hyun‐Kon Song,et al. Edge-exfoliated graphites for facile kinetics of delithiation. , 2012, ACS nano.
[25] F. Kang,et al. Modified natural flake graphite with high cycle performance as anode material in lithium ion batteries , 2009 .
[26] Jian-qing Zhang,et al. Effects of the oxidation treatment with K2FeO4 on the physical properties and electrochemical performance of a natural graphite as electrode material for lithium ion batteries , 2006 .
[27] M. Wissler,et al. Graphite and carbon powders for electrochemical applications , 2006 .
[28] Young Han Kim,et al. Development of a metal recovery process from Li-ion battery wastes , 2005 .