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"Brine treatment"×
Lithium×

Simbol Materials Lithium Extraction Operating Data From Elmore and Featherstone Geothermal Plants

Jul 01, 2015
253.5 kB
Publicly accessible
The data provided in this upload is summary data from its Demonstration Plant operation at the geothermal power production plants in the Imperial Valley. The data provided is averaged data for the Elmore Plant and the Featherstone Plant. See average brine composition tab for submi...
Authors
Harrison, S. Simbol, Inc
geothermalsalton seaelmorefeatherstonelithiummineral extractionicp-oesbrine treatmentfetherstonesimbol materialsextractionimperial valleybrinebrine compositiondemonstrationchemistrywater chemistrygeochemistry

Lithium Sorption from Simulated Geothermal Brine: Impact of pH, Temperature, and Brine Chemistry

Feb 06, 2016
65.55 kB
Publicly accessible
Lithium sorption information from experiments. Data includes the effects of pH, temperature and brine chemistry on the sorption of Lithium from a simulated geothermal brine. The sorbent used in the experiments is "hydrothermally produced, Spinel-LiMn2O4". The sorbent was produ...
Authors
Renew, J. Southern Research Institute
geothermalmineral recoverylithium removalph effecttemperature effectbrine chemistry effectsimulated brinelithium sorptionsimulated geothermal brinebrineuptakelithiumli

Synthetic Lithium Prize Brine for Finalists of the Geothermal Lithium Extraction Prize Competition

Sep 29, 2023
30.75 kB
Publicly accessible
The Department of Energy (DOE), Geothermal Technologies Office (GTO) launched a multi-phase funding program to advance technologies for extraction of lithium from geothermal brines. This initiative, known as American-Made Geothermal Lithium Extraction Prize (GLEP), had objectives ...
Authors
Neupane, G. and Smith, R. Idaho National Laboratory
lithium extractioncritical mineralsgeothermal brinedirect lithium extractionbrine miningbrine synthesiscompetitionsynthetic lithium prize brineslpbglepidaho national laboratorydlegeochemistrygeothermal fluidsalton seassgfamerican-made geothermal lithium extraction prize

SSGF Trace Element Concentrations

Jan 08, 2026
706.57 kB
Awaiting release
Presented are trace element concentrations of minerals from the Salton Sea Geothermal Field (SSGF), located in the Imperial Valley, California. With a recent increase in demand for lithium, the area is actively being studied as a source of geothermal brine for lithium extraction. ...
Authors
Kovalick, A. et al University of California Riverside
geothermaltrace elementssalton sea geothermal fieldrocksmineralhydrothermallithium valleygeothermal brineraw dataimperial countyssgfimperial valleyrare earth elementsreecritical mineralsmnznconibrine-rock reactionrock samplesbrine samplesrhyolitic domesdurmid hillsschmitt and hulenca 2-14wellschemistryfluid chemistrygeochemistrysalton sealithium extraction

Lithium and Manganese Uptake Data from Initial Set of Imprinted Polymers

Mar 27, 2015
271.5 kB
Publicly accessible
Batch tests of cross-linked lithium and manganese imprinted polymers of variable composition to assess their ability to extract lithium and manganese from synthetic brines at T=45 deg C .
Authors
Ventura, S. SRI International
geothermallithiummanganeseimprinted polymeradsorptionsynthetic brinesicp-oeslithium uptakemanganese uptakepolymerextractionbrinebrine studyusgin content modelngds content modelcontent model

SSGF Mineral Major Elements and Lithium Concentration

May 01, 2023
1.38 MB
Publicly accessible
Presented are major element and lithium concentrations of minerals from the Salton Sea Geothermal Field (SSGF), located in the Imperial Valley, California. With a recent increase in demand for lithium, the area is now being studied as a source of geothermal brine for lithium extr...
Authors
Humphreys, J. et al Lawrence Berkeley National Laboratory
geothermallithiummineralrockssalton sea geothermal fieldbrinelithium isotopteschloritegeologygeochemistryhydrothermalisotope quantificationextractionsalton sealithium valleygeothermal brineimperial countyraw data

Financial Summary, Nanofiltration Data, and Lithium Uptake Data

Dec 05, 2016
177.89 kB
Publicly accessible
Integrated testing of nanofiltration and lithium uptake subsystems using synthetic geothermal brine. Also includes a financial summary (Pro Forma) of the proposed 'Geothermal Thermoelectric Generation (G-TEG) with Integrated Temperature Driven Membrane Distillation and Novel Manga...
Authors
Renew, J. Southern Research Institute
geothermalnanofiltrationlithium uptakenano hmobrinerejection efficiencychemistryfinancialpro formageorgiasynthetic geothermal brinesouthern research institutethermoelectricg-teglithium extractionnpvnet present valueeconomicspricediscount ratecost per metric toncost summaryrevenue

Lithium Uptake Data of Lithium Imprinted Polymers

Dec 04, 2015
455 kB
Publicly accessible
Batch tests of lithium imprinted polymers of variable composition to assess their ability to extract lithium from synthetic brines at T = 45 degC. Initial selectivity data are included
Authors
Ventura, S. SRI International
geothermallithiumbrinessorbentgeothermal mineral recoverylithium polymer sorbentslithium removal efficiencyngdsusgincontent model

Nanofiltration Results: Membrane Removal of Calcium, Magnesium, Sodium, Silica, Lithium, Chlorine, and Sulfate from Simulated Geothermal Brines

Feb 06, 2016
35.91 kB
Publicly accessible
Results from a nanofiltration study utilizing simulated geothermal brines. The data includes a PDF documenting the process used to remove Calcium, Magnesium, Sodium, Silica, Lithium, Chlorine, and Sulfate from simulated geothermal brines. Three different membranes were evaluated...
Authors
Renew, J. Southern Research Institute
membrane nanofiltrationcalcium removalmagnesium removalsodium removalsilica removallithium removalchlorine removalsulfate removalmineral recoverynanofiltrationsimluated geothermal brinesilicachlorinesulfatelithiumsodiumcalciummagnesium
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