Recycling and reuse of lithium iron phosphate battery multi-component and sustainability assessment: A review. [PDF]
Wang FP +5 more
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Circular Potential of Lithium-Ion Battery Recycling Slags: Quantifying Microstructure and Elemental Distribution for a Holistic Valorization. [PDF]
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Multifunctional Phosphate Monomer Enabling LiNO<sub>3</sub> Solvation and In Situ Formation of Flame-Retardant Gel Polymer Electrolyte for High-Voltage Lithium Metal Batteries. [PDF]
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Block Copolymer-Enabled Low-Temperature Structural Battery Electrolytes Produced Using Polymerization-Induced Phase Separation. [PDF]
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A review of hazards associated with primary lithium and lithium-ion batteries
Chemical Engineering Research and Design, 2011Abstract Primary lithium batteries contain hazardous materials such as lithium metal and flammable solvents, which can lead to exothermic activity and runaway reactions above a defined temperature. Lithium-ion batteries operating outside the safe envelope can also lead to formation of lithium metal and thermal runaway.
Diego Lisbona, Timothy Snee
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Ceramic/polymer solid electrolyte based lithium water primary battery
Electrochimica Acta, 2013Abstract A novel Li/H2O primary battery is reported. The battery consists of a thin film lithium metal anode evaporated on hybrid inorganic/organic lithium ion conductive solid electrolyte, H2O as the electroactive cathode material, and a Pt mesh current collector.
Michael J Wagner
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Combustion characteristics of primary lithium battery at two altitudes
Journal of Thermal Analysis and Calorimetry, 2016To increase the safety margin, the fire hazard of lithium battery should be considered. In this research, the experimental results of lithium battery fires were provided, expecting to offer guidance to facilitate the safe handling of battery packs and cells under normal and high-altitude conditions.
Mingyi Chen, Jiahao Liu, Que Huang
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Battery Types – Lithium Batteries – Lithium Primary Batteries | Lithium-Carbon Fluoride Battery
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A Lithium‐Organic Primary Battery
Small, 2019AbstractLithium primary batteries are still widely used in military, aerospace, medical, and civilian applications despite the omnipresence of rechargeable Li‐ion batteries. However, these current primary chemistries are exclusively based on inorganic materials with high cost, low energy density or severe safety concerns.
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