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"Lawrence Berkley National Lab"×
Rare Earth Elements×

Retrospective Analysis of Geothermal Mineral Recovery and Domestic Resource Assessment References

Oct 20, 2021
1.69 MB
Curated
This reference database in RIS format contains all of the references that were collected as part of our retrospective analysis of geothermal mineral recovery (REE and Li) activities and domestic resource assessment. The outputs detail the chemistry and molecular processes used in ...
Authors
Dobson, P. and Stringfellow, W. Lawrence Berkeley National Laboratory
geothermalenergylithiumreemineral recoveryrecoverygeothermal brinesbrinesgeochemistytechnologydomestic resourceresourcemineral

Chemistry of the thermal water samples of the Camas Prairie area in Idaho, USA

Sep 30, 2020
831.5 kB
Publicly accessible
This dataset includes chemistry of geothermal water samples of the Camas Prairie area in Idaho. The samples included in this dataset were collected over the period of 2016-2019. Collection/analysis of new water samples and compilation of existing water chemistry database were cond...
Authors
Neupane, G. et al Idaho National Laboratory
snake river plaincamas prairieidahothermal watersplay fairwaypfasrpblindresourcecharacterizationisotope analysischemistrywater sampleswatergeochemistryisotopegroundwater chemistrygroundwaterhydrologyrare earth elements

Design of an Airlift Bioreactor

Mar 13, 2017
417.07 kB
Publicly accessible
An important consideration for the process design is cell immobilization-enabled flow-through operation. Large-scale biosorption relies on cells that are immobilized on a supporting substrate and used to 'attract' metal ions. Cell immobilization allows easy separation of the feed...
Authors
Jiao, Y. et al Lawrence Livermore National Laboratory
geothermalenergybioreactorairliftrare earthbiosorptionadsorptionreebiofilmresource recoverybioadsorption

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

REE Adsorption Performance with Immobilized Caulobacter Biofilms

Apr 01, 2018
162.27 kB
Publicly accessible
This submission includes data collected from experiments on the performance of rare earth adsorption by immobilized bacteria that accompany the FY18 Q2 and Q3 quarter reports. Relevant information from these reports is included in a resource below. The spreadsheet below includes d...
Authors
Jiao, Y. and Park, D. Lawrence Livermore National Laboratory
geothermalenergyreerare earthelementadsorptionbiofilmcaulobacterbacteriabacterialcapacityweightbiomassthermostabilityterbiumtbbiosorptiongeofluidbrinefluidbioadsorptionbiochipsbiofilmsmutag

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

Recovery of Rare Earth Elements from Geothermal Fluids through Bacterial Cell Surface Adsorption

Jan 01, 2018
7.18 MB
Publicly accessible
We summarized the FY17 and part of FY18 results of the analysis of the effect of several parameters (e.g., total dissolved solids, specific competing metals, pH, and temperature) on REE recovery from geothermal brine in a manuscript that was submitted to Environmental Science & Te...
Authors
Jiao, Y. et al Lawrence Livermore National Laboratory
geothermalenergyreebrinefluidrare earthelementsbacteriacellsurfaceadsorptionbioengineeringmicrobemicrobialbiosorptionbioadsorptionlanthanide bindingtaglbtgeofluide. coligeochemicalgeochemistryfactors

Techno-Economic Assessment for Integrating Biosorption into Rare Earth Recovery Process

Oct 09, 2017
1.2 MB
Publicly accessible
The current uncertainty in the global supply of rare earth elements (REEs) necessitates the development of novel extraction technologies that utilize a variety of REE source materials. Herein, we examined the techno-economic performance of integrating a biosorption approach into a...
Authors
Jiao, Y. et al Lawrence Livermore National Laboratory
geothermalenergytearesource recoveryreerare earthbrinetailings

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

Techno-Economic Assessment for Integrating Biosorption into Rare Earth Recovery Process

Jul 01, 2017
892.87 kB
Publicly accessible
The current uncertainty in the global supply of rare earth elements (REEs) necessitates the development of novel extraction technologies that utilize a variety of REE source materials. Herein, we examined the techno-economic performance of integrating a biosorption approach into ...
Authors
Jiao, Y. et al Lawrence Livermore National Laboratory
geothermalenergyteabioreactorrare earthadsorptionbiosorptiontechno-economiceconomicsreeresource recoverycostanalysispricecash flowfeedstockmass balancebrine

Core-Shell REE Sorbent Extraction Data

Apr 27, 2017
19.17 kB
Publicly accessible
Solution chemical analysis data for magnetic core shell sorbent materials. Deionized water and brine solutions were spiked with five rare earth elements and the solutions analyzed after approximately 5 minutes exposure to the sorbent particles.
Authors
Thallapally, P. Pacific Northwest National Laboratory
geothermalenergyreemineral recoveryrare earth elementschemistrychemical analysismagneticcore shellsorbent materialsbrine studybrine

Magnetic Test Loop Particle Retention Data for REE Extraction from Geothermal Fluids

Jul 27, 2018
396.3 kB
Publicly accessible
Measurements of particle extraction efficiency under various flow rate and magnetic power conditions
Authors
McGrail, P. and Liu, J. Pacific Northwest National Laboratory
geothermalenergymineral extractionreerare earthretentionoperationratecomparisonnanoparticleabsorbancemagneticextractionelementmineralparticle

Aqueous Rare Earth Elements, Concentration, and Stable Isotopes in Deep Basin Brines, Wyoming

Apr 25, 2017
7.55 MB
Publicly accessible
Presentation given to National Groundwater Association meeting on deep basin brines. This presentation discusses why produced waters are being observed, the importance of REE's, the study areas examined, the data collected, and the relationship between REE concentration and possib...
Authors
Quillinan, S. et al University of Wyoming
geothermalenergydeep basin brinesbrineisotopesrare earth elementsreetrace elementsbasinwind river basinpowder river basinwyomingconcentration

Rare Earth Element Concentrations in Wyoming's Produced Waters

Jul 01, 2017
4.28 MB
Publicly accessible
Version 2. This study is a joint effort by the University of Wyoming (UW), the UW Engineering Department (UW-ENG), and Idaho National Laboratories (INL) and the United States Geological Survey (USGS) to describe rare earth element concentrations in oil and gas produced waters. In ...
Authors
Quillinan, S. et al University of Wyoming
geothermalenergyproduced watersproduced fluidreerare earth elementswyomingcoproduced resourcesoil and gascoproduced

Technical Report-Rare Earth Element Concentrations in Wyoming's Produced Waters

Jul 01, 2017
4.2 MB
Publicly accessible
This study is a joint effort by the University of Wyoming (UW), the UW Engineering Department (UW-ENG), and Idaho National Laboratories (INL) and the United States Geological Survey (USGS) to describe rare earth element concentrations in oil and gas produced waters. In this work w...
Authors
Quillinan, S. et al University of Wyoming
geothermalenergyrare earth elementproduced watersreecoproducedresourcesgeochemicalisotope concentrationgeochemsitryoil and gastrace metalconcentrationcoalbrine study

Aqueous Rare Earth Element Patterns and Concentration in Thermal Brines Associated with Oill and Gas Production

Feb 01, 2017
3.77 MB
Publicly accessible
This study is part of a joint effort by the University of Wyoming (UW) School of Energy Resources (SER), the UW Engineering Department, Idaho National Laboratories (INL), and the United States Geological Survey (USGS) to describe rare earth element concentrations in oil and gas pr...
Authors
Nye, C. et al University of Wyoming
geothermalenergyrare earth elementsgeochemistryproduced waterbrineoil and gasreetrace metalcoalconcentrationcoproduced

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

Magnetic Nanofluid Rare Earth Element Extraction Process Report, Techno Economic Analysis, and Results for Geothermal Fluids

Mar 14, 2016
1.86 MB
Publicly accessible
This GDR submission is an interim technical report and raw data files from the first year of testing on functionalized nanoparticles for rare earth element extraction from geothermal fluids. The report contains Rare Earth Element uptake results (percent removal, mg Rare Earth Ele...
Authors
McGrail, P. Pacific Northwest National Laboratory
geothermalreemofnanofluidrare earth elementmetal organic frameworkgeothermal mineral recoveryneodymiumeuropiumyttriumdysprosiumcesiummagnetic separationmetal uptaketechno economic analysisrare earth element extractiontechno economicsilica sorbentsuptake results

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

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
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