In-Situ Process for Sorption and Stripping of Rare Earth Elements from Simulated Geothermal Brine

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Description of a conceptual commercial process to remove rare earth elements (REEs) from geothermal brine, based on a small-scale laboratory experiment to load, strip, and regenerate a ligand-based media used to adsorb REEs from a simulated brine doped with known mineral concentrations.

Citation Formats

Tusaar Corp.. (2016). In-Situ Process for Sorption and Stripping of Rare Earth Elements from Simulated Geothermal Brine [data set]. Retrieved from https://gdr.openei.org/submissions/816.
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Stull, Dean. In-Situ Process for Sorption and Stripping of Rare Earth Elements from Simulated Geothermal Brine . United States: N.p., 24 May, 2016. Web. https://gdr.openei.org/submissions/816.
Stull, Dean. In-Situ Process for Sorption and Stripping of Rare Earth Elements from Simulated Geothermal Brine . United States. https://gdr.openei.org/submissions/816
Stull, Dean. 2016. "In-Situ Process for Sorption and Stripping of Rare Earth Elements from Simulated Geothermal Brine ". United States. https://gdr.openei.org/submissions/816.
@div{oedi_816, title = {In-Situ Process for Sorption and Stripping of Rare Earth Elements from Simulated Geothermal Brine }, author = {Stull, Dean.}, abstractNote = {Description of a conceptual commercial process to remove rare earth elements (REEs) from geothermal brine, based on a small-scale laboratory experiment to load, strip, and regenerate a ligand-based media used to adsorb REEs from a simulated brine doped with known mineral concentrations. }, doi = {}, url = {https://gdr.openei.org/submissions/816}, journal = {}, number = , volume = , place = {United States}, year = {2016}, month = {05}}

Details

Data from May 24, 2016

Last updated Feb 15, 2018

Submitted May 24, 2016

Organization

Tusaar Corp.

Contact

Dean Stull

303.589.9472

Authors

Dean Stull

Tusaar Corp.

DOE Project Details

Project Name Environmentally Friendly Economical Sequestration of Rare Earth Metals from Geothermal Waters

Project Lead Arlene Anderson

Project Number EE0006751

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