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New Science Based Concepts for Increased Efficiency in Battery Recycling 2020

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

lead-acid battery recycling; pyrite cinder treatment; lead bullion; sulfide matte; SO2 emissions; pilot plant; environmental technologies; waste treatment; recycling; spent lithium-ion batteries; recycling chain; process stages; unit processes; industrial recycling technologies; mechanical treatment; slag cleaning; cobalt; nickel; manganese; lithium-ion battery; circular economy; batteries; reuse; disassembly; safety; lithium minerals; lithium slag characterization; thermochemical modeling; critical raw materials; smelting; lithium; graphite; mechanical processing; pyrometallurgy; thermal treatment; pyrolysis; hydrometallurgy; precipitation; oxalic acid; mixed oxalate; battery recycling; lithium–sulfur batteries; metallurgical recycling; metal recovery; recycling efficiency; lithium-ion batteries; all-solid-state batteries; slag; leaching; dry digestion; fractionation; tubular centrifuge; rotational speed control; particle size analysis; lithium iron phosphate; LFP; carbon black; direct battery recycling; recovery; thermodynamic modeling; engineered artificial minerals (EnAM); melt experiments; PXRD; EPMA; manganese recovery; solvent extraction; D2EHPA; factorial design of experiments; lithium-ion batteries (LIBs); lithium removal; phosphorous removal; recovery of valuable metals; carbonation; lithium phase transformation; autoclave; supercritical CO2; X-ray absorption near edge structure (XANES); powder X-ray diffraction (PXRD); electron probe microanalysis (EPMA); lithium recycling; lithium batteries; black mass; LIB; mechanical recycling processes; battery generation; solid state batteries; robotic disassembly; electric vehicle battery; task planner; n/a

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-0365-5926-1

País de edición

Suiza