Open Access Open Access  Restricted Access Subscription or Fee Access

Studies on sources of lithium

B. Goswami

Abstract


Abstract

Li is abundant in nature amounting 20 mg/kg of the earth crust. Li widely used in Li ion batteries (LIBs), powerLIBs, chemicals, ceramics, glasses, rubber, reactors, pharmacy, space sectors and alloyed to Al. Sources of Li are natural deposit of minerals, salt crust, brine, salt lakes and ocean basin accumulations. Economical route of extractions are hydrometallurgy and pyrometallurgy. Sorption of selective element by inorganic ion exchange applied for poor containment in water and brine. Recycling of LIBs bear primary importance in explore of economical hydrometallurgy. Toxicity of heavy element and electrolytes remained same as abated by plant rules during production as well dispose or recovery processing. Coal contains abrupt varying Li content to explore mechanism of accumulation. LIBs to power LIBs enhanced consumption mt continuously to study life cycles of Li in addition to new add.

Keywords

Lithium, Toxic, Extraction, Mineral, Bittern, LIBs


Full Text:

PDF

References


Ling Li; Vishwanath G. Deshmane; M. ParansParanthaman; Ramesh Bhave; Bruce A. Moyer; Stephen Harrison; Lithium Recovery from Aqueous Resources and Batteries: A Brief Review; Johnson Matthey Technol. Rev., 2018, 62, (2), 161–176

GAUKHAR BISHIMBAYEVA, DINARA ZHUMABAYEVA, NURLAN ZHANDAYEV, ARAILYM NALIBAYEVA, KONSTANTIN SHESTAKOV , IGOR LEVANEVSKY and ASEM ZHANABAYEVA; Technological Improvement, Lithium Recovery Methods from Primary Resources ; ORIENTAL JOURNAL OF CHEMISTRY; CODEN: OJCHEG 2018, Vol. 34, No.(6): Pg. 2762-2769

F. Margarido, N. Vieceli, F. Durão, C. Guimarães, C.A. Nogueira; Minero-metallurgical processes for lithium recovery from pegmatitic ores; ComunicaçõesGeológicas (2014) 101, Especial II, 795-798

Khalil Afgouni; J.H.SilvaSá; Lithium ore in Brazil; Energy; Volume 3, Issue 3, June 1978, Pages 247-253

PratimaMeshram, B.D. Pandey, T.R. Mankhand; Extraction of lithium from primary and secondary sources by pre-treatment, leaching and separation: A comprehensive review; Hydrometallurgy 150 (2014) 192–208

Valeria Hermosilla1 2 ; Irma Vila2 ; Sylvia V. Copaja1 ; LITHIUM AND BORON OF SPRING WATER AND SALT CRUST FROM SALAR DE ASCOTÁN, SOUTHWESTERN ALTIPLANO; J. Chil. Chem. Soc. vol.64 no.3 Concepción Sept. 2019

AlexandreChagnes; Recent Advances in Hydrometallurgy for the Development of a Sustainable Production of Lithium-Ion Batteries. ALTA 2019 – Lithium processing conference, May 2019, Perth, Australia. ffhal-02270375f;

P. Kudryavtsev; LITHIUM IN NATURE, APPLICATION, METHODS OF EXTRACTION (REVIEW); Journal “Scientific Israel- Technological Advantages" Vol.18, № 3, 2016

Yuzhuang Sun, Yanheng Li, Cunliang Zhao, Mingyue Lin, Jinxi Wang and Shenjun Qin; Concentrations of Lithium in Chinese Coals; ENERGY EXPLORATION & EXPLOITATION • Volume 28 • Number 2 • 2010 pp. 97-104

Hiroshi KAWAMOTO; Wakana TAMAKI; Trends in Supply of Lithium Resources and Demand of the Resources for Automobiles; QUARTERLY REVIEW No.39 / April 2011

Laurence Kavanagh, Jerome Keohane, Guiomar Garcia Cabellos, Andrew Lloyd and John Cleary; Global Lithium Sources—Industrial Use and Future in the Electric Vehicle Industry: A Review; Resources 2018, 7, 57


Refbacks

  • There are currently no refbacks.