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Rare Earth Elements×

Recovery of Rare Earths, Precious Metals and Other Critical Materials from Geothermal Waters with Advanced Sorbent Structures

Sep 30, 2015
1.4 MB
Publicly accessible
The work evaluates, develops and demonstrates flexible, scalable mineral extraction technology for geothermal brines based upon solid phase sorbent materials with a specific focus upon rare earth elements (REEs). The selected organic and inorganic sorbent materials demonstrated h...
Authors
Addleman, R. et al Pacific Northwest National Laboratory
geothermalsorbentsnanorare earth elementsreesprecious metalsmineral recoverygreen miningsharkey hot springs water chemistryinorganic sorbent removal efficiencyorganic sorbent removal efficiencyrecovery of rare earths from sorbentssharkey hot springs aqueous chemistryrare earth elementsorbent rare earth element removal efficiencytechnical reportperformancerecyclesconcentrartion

Advanced Sorbent Structure Recovery of Rare Earths, Precious Metals and Other Critical Materials from Geothermal Waters and Its Associated Technoeconomics

Sep 21, 2016
438.56 kB
Publicly accessible
The work evaluates, develops and demonstrates flexible, scalable mineral extraction technology for geothermal brines based upon solid phase sorbent materials with a specific focus upon rare earth elements (REEs). The selected organic and inorganic sorbent materials (silica and MOF...
Authors
Addleman, R. et al Pacific Northwest National Laboratory
geothermalsorbentsnanorare earth elementsreesprecious metalsmineral recoverygreen mininginorganic sorbent removal efficiencyorganic sorbent removal efficiencycomposite thin filmree

REE Sorption Study for Media #1 and Media #2 in Brine #1 and #2 at different Liquid to Solid Ratio's at Ambient Temperature

Mar 27, 2015
727.99 kB
Publicly accessible
This data set shows the different loading capacities of Media #1 and Media #2 in a high and low salt content brine matrix at different liquid to solid ratio's. These data sets are shaker bath tests on media #1 and media #2 in brine's #1 and #2 at 500mL-.5g(1000-1 ratio), 150mL-.75...
Authors
Garland, G. Tusaar Corp.
geothermalmedia 1media 2ambient temperature1000-1 ratio200-1 ratio60-1 ratiobrine1brine 2media #1media #2brine #1brine #2brinemediasorptionstudyliquid to solid ratioshaker testshaker bath testreerare earth elementsalt content

REE Sorption Study of Seived 50 +100 Mesh Fraction of Media 1 in Brine 1 at Different Concentrations of REE at 70C

Jun 29, 2015
269.69 kB
Publicly accessible
This dataset shows the sorption capacities of smaller grain size (-50 +100 mesh) of media #1 in brine #1 at different starting concentrations of REE's at elevated temperature of 70C. The experimental conditions are 2g of 50 +100 mesh media #1 to 150mL of REE solution at concentrat...
Authors
Garland, G. Tusaar Corp.
geothermalmedia 1brine 1elevated temperature 70c-50 100 seivedph 5.5shakertablemedia #1brine #1-50 +100 seived70csorptionshaker tableshaker testshaker bathsequestrationreerare earth elementsrecoveryextractionmineral recoverybrinebrine studychemistryaqueous chemistryseive

Rare Earth Element Sorption Study on sieved 50 +100 mesh fraction of Media 1 in Brine 1 with Different Starting pHs at 70C

Sep 29, 2015
265.11 kB
Publicly accessible
This is a continuation of the rare earth element sorption study for shaker bath tests on 2g media #1 in 150mL brine #1 with different starting pH's at 70C. In a previous submission we reported data for shaker bath tests for brine #1 with starting pH's of 3.5, 4.5 and 5.5. In this ...
Authors
Garland, G. Tusaar Corp.
geothermalmedia 1brine 1elevated temperaturesorption studyshaker bath testgeothermal mineral recoverymedia #1brine #1shaker bath testsphreerare earth elements

Repetitive Regeneration of Media 1 after REE Sorption from Brine 1 at 70C

Jul 23, 2015
261.02 kB
Publicly accessible
This dataset shows the ability of media #1 to be loaded with REE's, stripped of the REE's sequestered, regenerated, and reused over many cycles.
Authors
Garland, G. Tusaar Corp.
geothermalmedia 1brine 1regenerationelevated temperaturemedia #1brine #1shakertablereerare earth elementrecoveryextractionchemistryaqueous chemistrysequestrationsorptionbrinebrine studyreusablemineral recovery

Shaker Table Experiments with Rare Earth Elements Sorption from Geothermal Brine

Jul 21, 2015
251.16 kB
Publicly accessible
This dataset described shaker table experiments ran with sieved 50 +100 mesh media #1 in brine #1 that have 2ppm each of the 7 REE metals at different starting pH's of 3.5, 4.5, and 5.5. The experimental conditions are 2g media to 150mL of REE solution, at 70C.
Authors
Garland, G. Tusaar Corp.
geothermalshaker bath70cmedia 1-50 100 meshbrine 1various phrare earth elementsreesorbtion studymineral extractionexperimentmedia #1-50 +100 meshbrine #1shaker tableshaker testbrinebrine studyrecoveryextractionsequestration

Advanced Sorbent Structure Recovery of REEs, Precious Metals and Other Valuable Metals from Geothermal Waters and Its Associated Technoeconomics

May 25, 2017
483.89 kB
Publicly accessible
This work evaluates, develops and demonstrates flexible, scalable mineral extraction technology for geothermal brines based upon solid phase sorbent materials with a specific focus upon rare earth elements (REEs). The selected organic and inorganic sorbent materials demonstrated h...
Authors
Addleman, S. et al Pacific Northwest National Laboratory
geothermalsorbentsnanorare earth elementsreesprecious metalsmineral recoverygreen mininginorganic sorbent removal efficiencyorganic sorbent removal efficiencycomposite thin filmtechnoeconomicslanthanumeuropiumholmiumsilvercopperzinc

Sorption Capacity of Europium for Media 1 and Media 2 from Solution at Ambient Temperature

Mar 16, 2015
227.03 kB
Publicly accessible
This dataset shows the capacity for Europium of media #1 and media #2 in a shakertable experiment. The experimental conditions were 150mL of 500ppm Eu solution, 2g of media, pH of 3.2, at ambient temperature.
Authors
Garland, G. Tusaar Corp.
geothermalshakertablemedia 1media 2500ppm europiumph 3.2ambient temperaturemedia #2media #1mediashaker tableshaker testsorptioneucapacityeuropiumshaker bathchemistryaqueous chemistryreerare earth elementsrecoverybrinebrine studymineral recovery

Repetitive Regeneration of Media #1 in a Dynamic Column Extraction using Brine #1

Oct 14, 2015
235.97 kB
Publicly accessible
This data is from a regeneration study from a dynamic column extraction experiment where we ran a solution of REE's through a column of media #1 then stripped the REE's off the media using 2M HNO3 solution. We then re-equilibrated the media and repeated the process of running a RE...
Authors
Garland, G. Tusaar Corp.
geothermalmedia 1brine 1regeneration studydynamic column extractiongeothermal mineral recoverymedia #1brine #1brine studyreerare earth elements

Dynamic Column Extraction for Europium on Media 1 at Ambient Temperature

Apr 07, 2015
252.59 kB
Publicly accessible
This is a dataset for a 200ppm europium solution sent through a column with 12g of media #1 at pH of 3.2. This column experiment was run at ambient temperature at a flow rate of 2mL/min.
Authors
Garland, G. Tusaar Corp.
geothermaleuropiummedia 1ambient temperaturedynamic column extractionmedia #1eusolutioncolumnexperimentchemistryaqueous chemistryreerare earth elementrecoveryextractionbrinebrine studymineral recovery

Great Salt Lake Composition and Rare Earth Speciation Analysis

Apr 19, 2017
424.34 kB
Publicly accessible
We have conducted aqueous speciation analyses of the Great Salt Lake (GSL) brine sample (Table 1) and a mock geo sample (Table 2) spiked with 1 ppb Tb and 100 ppb Tb. The GSL speciation (Figure 1) aligns with our basic speciation expectations that strong carbonate complexes would ...
Authors
Jiao, Y. et al Lawrence Livermore National Laboratory
geothermalenergyrare earthadsorptionbiosorptiongslspeciationterbiumtbgreat salt lakereeelementaqueouschemistrybrine

Rare Earth Desorption Test with Citrate and Bicarbonate

Jun 01, 2017
65.97 kB
Publicly accessible
LBT (lanthanide binding tag) cells were grown overnight in LB media with 0.05% Amp. 1:100 subculture taken from overnights, grown for 2 hours. LBT was induced with 0.002% arabinose added for 3 hours. REE adsorption was done by combining 350 ul (0.25% 1M MES, 12.5 uM Tb, and 12.5 u...
Authors
Jiao, Y. et al Lawrence Livermore National Laboratory
geothermalenergyadsorptiondesorptionrare earthcitratebicarbonatereeresource recoverycentrifugebrinelbtlanthanide binding tag

Fluid Rare Earth Element Analyses from Geothermal Wells Located on the Reykjanes Peninsula, Iceland and Middle Valley Seafloor Hydrothermal System on the Juan de Fuca Ridge.

May 01, 2015
692 kB
Publicly accessible
Results for fluid rare earth element analyses from four Reykjanes peninsula high-temperature geothermal fields. Data for fluids from hydrothermal vents located 2400 m below sea level from Middle Valley on the Juan de Fuca Ridge are also included. Data have been corrected for flash...
Authors
Fowler, A. University of California
geothermalreykjanessvartsengihellisheidinesjavellirmiddle valleyreehydrothermal fluidgeothermal fluidrare earth elementmineral recoveryaqueous chemistryaasg geothermal datausgin content modelngds content model

Surface Complexation Modeling of Terbium Biosorption onto E. Coli Bacterial Surfaces with Lanthanide Binding Tags

Apr 01, 2018
142.53 kB
Publicly accessible
Lanthanide binding tags (LBTs) have been engineered onto native Escherichia coli (E. coli) bacterial surfaces to enhance extraction and recovery of rare earth elements (REEs). Three strains of E. coli were studied: (1) the native E. coli surface, (2) a mutant E. coli surface with ...
Authors
Jiao, Y. Lawrence Livermore National Laboratory
geothermalenergymodelingterbiumbiosorptione. colibacteriabacterialsurfacelanthanide bindingtaglbtreerare earthbrinefluidgeofluidgeochemicalgeochemistrybioadsorptionbioengineering

Fluid Rare Earth Element Analyses from Wells RN-12 and RN-19, Reykjanes, Iceland

Jul 24, 2015
596.5 kB
Publicly accessible
Results for fluid rare earth element analyses from Reykjanes wells RN-12 and RN-19. The data have not been corrected for flashing. Samples pre-concentrated using chelating resin with IDA functional group (InertSep ME-1). Analyzed using an element magnetic sector ICP-MS.
Authors
Fowler, A. and Zierenberg, R. University of California
geothermalreebrinereykjanesicelandrare earth elementsrn-12rn-19chemistrygeochemistrywater chemistrybrine studyusgin content modelngds content modelcontent modelicp-mselement magnetic sectoraqueous chemistry

Rare Earth Element Biomining from the Great Salt Lake Brine Using Engineered E. Coli

Jun 04, 2017
207.33 kB
Publicly accessible
This data describes rare earth element adsorption onto E. coli cells engineered to express a lanthanide binding tag (LBT). We used a Great Salt Lake synthetic solution as the background matrix with Tb added to 1-10,000 ppb, concentrations much lower than the competing ions presen...
Authors
Jiao, Y. et al Lawrence Livermore National Laboratory
geothermalenergyrare earth elementadsorptiongeofluidreebrinebiomininge. coligreat salt lakebrine study

Experimental Parameters Affecting Stripping of Rare Earth Elements from Loaded Sorptive Media in Simulated Geothermal Brines

May 24, 2016
247.65 kB
Publicly accessible
Experimental results from several studies exploring the impact of pH and acid volume on the stripping of rare earth elements (REEs) loaded onto ligand-based media via an active column. The REEs in this experiment were loaded onto the media through exposure to a simulated geother...
Authors
Stull, D. Tusaar Corp.
geothermalmediarare earth elementsmedia strippingphreemineral recoveryadsorptioncolumnelutionexperimentsimulated brinerare earth elementbrine study

Brine Stability Study

Apr 15, 2015
1.75 MB
Publicly accessible
This is a study of the brine formulations that we were using in our testing were stable over time. The data includes charts, as well as, all of the original data from the ICP-MS runs to complete this study.
Authors
Garland, G. Tusaar Corp.
geothermalbrinestabilitysimplebrine studyreerare earth elementsnakcasodiumcalciumpotassium

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
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