OpenEI: Energy Information
  • Geothermal Data Repository
  • My User
    • Sign Up
    • Login
 
  • Data
    • View All Submissions
    • Data Lakes
    • Data Standards
    • Submit Data
  • Help
    • Frequently Asked Questions
    • Data Submission Best Practices
    • Data Submission Tutorial Videos
    • Contact GDR Help
  • About
  • Search

Search GDR Data

Showing results 51 - 62 of 62.
Show results per page.
Order by:
Available Now:
Filters Clear All Filters ×
Topic
Technologies
Demonstration Sites
Data Type
"light detection and ranging"×
Rare Earth Elements×

Rare Earth Element Concentrations from Wells at the Don A. Campbell Geothermal Plant, Nevada

Dec 09, 2016
731.5 kB
Publicly accessible
* Requires permission of originators for use. Rare earth element concentrations in thermal springs from the wells at the Don A. Campbell geothermal plant, Nevada. Samples taken from geothermal wells 85-11, 65-11, 54-11, and 64-11. Includes pH and concentrations for Cerium, Dyspros...
Authors
Fowler, A. and Zierenberg, R. University of California
geothermalnevadadon a. campbellrare earth elementsbrinereemineral countyconcentrationsaqueous chemistrythermal springsusgin content modelngds content modelcedyereugdholalundprsmtbtmyyb

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

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

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

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

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

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

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

Gd Uptake Experiments for Preliminary Set of Functionalized Adsorbents (With Content Model)

Jul 01, 2015
261.5 kB
Publicly accessible
These data summarize adsorption experiments conducted with Gd in 0.5 M NaCl. Results represent preliminary, proof-of-concept data utilizing fine-powder silica gel as the adsorbent support. Future testing will focus on larger, application-appropriate beads.
Authors
Noack, C. Carnegie Mellon University
geothermalreeadsorptionseparationgd uptakegadoliniumgdmineral uptakeusgin content modelngds content modelgeochemistrywater chemistrybrinechemistrybrine studyadsorbentsilica gelcontent model

Method to Recover Media Ligand Losses During Sorption of Rare Earth Elements from Simulated Geothermal Brines

May 24, 2016
57.03 kB
Publicly accessible
This document describes the method and results of an in-situ experiment used to confirm that ligand bleed from a sorptive media can be contained. The experiment focused on maintaining the media's sorption of rare earth elements (REE) obtained from a simulated geothermal brine dop...
Authors
Stull, D. Tusaar Corp.
geothermalligandadsorptionsimulated brinemethodmineral recoveryrare earth elementreegeothermal brinesorptionligand bleedbrine study

Rare Earth Element Concentrations in Submarine Hydrothermal Fluids

Oct 27, 2017
2.13 MB
Publicly accessible
Rare earth element concentrations in submarine hydrothermal fluids from Alarcon Rise, East Pacific Rise, REE concentrations in submarine hydrothermal fluids from Pescadero Basin, Gulf of California, and the Cleft vent field, southern Juan de Fuca Ridge. Data are not corrected to z...
Authors
Fowler, A. and Zierenberg, R. University of California
hydrothermalrare earth elementssubmarineoffshorereegeothermaldataaasgaqueous chemistryventcontent modelngdsusginfluid chemistrygeochemistryaqueousmineral recoverypescadero basingulf of californiacleft ventjuan de fuca ridgealarcon riseeast pacific rise

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
<< Previous123
Google Map
  • About the GDR
  • Partners & Sponsors
  • Disclaimers
  • Developer Services
  • The GDR provides free access to data generated from projects funded by the U.S. Department of Energy's Office of Geothermal.
  • Content is available under Creative Commons Attribution 4.0 unless otherwise noted.

Privacy Policy Notification

This site uses cookies to store and share user preferences with other OpenEI sites, and uses Google Analytics to collect anonymous user information such as which pages are visited, for how often, and what searches or other webpages may have led users here. You can prevent Google Analytics from recognizing you on return visits to this site by disabling cookies on your browser or by installing a Google Analytics Opt-out Browser Add-on. By clicking "Accept" you agree this site can store cookies on your device and disclose information to OpenEI and Google Analytics in accordance with our privacy policy.

OpenEI Privacy Policy Google Analytics Terms of Service