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Rare Earth Elements×

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

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

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

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

SSGF Trace Element Concentrations

Jan 08, 2026
706.57 kB
Curated
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

Rare Earth Element Content of Thermal Fluids from Surprise Valley, California

Sep 23, 2015
830.5 kB
Publicly accessible
Rare earth element measurements for thermal fluids from Surprise Valley, California. Samples were collected in acid washed HDPE bottles and acidified with concentrated trace element clean (Fisher Scientific) nitric acid. Samples were pre-concentrated by a factor of approximately 1...
Authors
Fowler, A. and Zierenberg, R. University of California
geothermalrare earth elementssurprise valleymineral recoveryrare earth element aqueous chemistryhot springsboiling springsreeaqueous chemistrycontent modelaqueous chemistry analysisaasg

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

SOLTHERM Thermodynamic Database for Geochemical Modeling

Oct 07, 2015
Size unavailable
Curated
This data submission is a link to a thermodynamic database maintained by the University of Oregon. The data at this link are not 'data results' from sampling. The data at this link comprise a thermodynamic database for aqueous species, minerals, and gases, including data for stoic...
Authors
Palandri, J. University of Oregon
geothermalreerare earth elementsthermodynamicsgeochemistrymodelingthermodynamicdatabasegeochemicalmodelmineralglassstoichiometrychemistryminerologysolthermaqueous species

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
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