Lithium Sorption from Simulated Geothermal Brine: Impact of pH, Temperature, and Brine Chemistry
Lithium sorption information from experiments. Data includes the effects of pH, temperature and brine chemistry on the sorption of Lithium from a simulated geothermal brine. The sorbent used in the experiments is "hydrothermally produced, Spinel-LiMn2O4". The sorbent was produced by Carus Corporation.
Citation Formats
Southern Research Institute. (2016). Lithium Sorption from Simulated Geothermal Brine: Impact of pH, Temperature, and Brine Chemistry [data set]. Retrieved from https://dx.doi.org/10.15121/1402499.
Renew, Jay. Lithium Sorption from Simulated Geothermal Brine: Impact of pH, Temperature, and Brine Chemistry. United States: N.p., 06 Feb, 2016. Web. doi: 10.15121/1402499.
Renew, Jay. Lithium Sorption from Simulated Geothermal Brine: Impact of pH, Temperature, and Brine Chemistry. United States. https://dx.doi.org/10.15121/1402499
Renew, Jay. 2016. "Lithium Sorption from Simulated Geothermal Brine: Impact of pH, Temperature, and Brine Chemistry". United States. https://dx.doi.org/10.15121/1402499. https://gdr.openei.org/submissions/690.
@div{oedi_3428, title = {Lithium Sorption from Simulated Geothermal Brine: Impact of pH, Temperature, and Brine Chemistry}, author = {Renew, Jay.}, abstractNote = {Lithium sorption information from experiments. Data includes the effects of pH, temperature and brine chemistry on the sorption of Lithium from a simulated geothermal brine. The sorbent used in the experiments is "hydrothermally produced, Spinel-LiMn2O4". The sorbent was produced by Carus Corporation.}, doi = {10.15121/1402499}, url = {https://gdr.openei.org/submissions/690}, journal = {}, number = , volume = , place = {United States}, year = {2016}, month = {02}}
https://dx.doi.org/10.15121/1402499
Details
Data from Feb 6, 2016
Last updated Oct 24, 2017
Submitted Feb 6, 2016
Organization
Southern Research Institute
Contact
Jay Renew
205.581.2000
Authors
Original Source
https://gdr.openei.org/submissions/690Research Areas
Keywords
geothermal, mineral recovery, Lithium removal, pH effect, temperature effect, brine chemistry effect, simulated brine, Lithium sorption, simulated geothermal brine, brine, uptake, lithium, LiDOE Project Details
Project Name Geothermal Thermoelectric Generation (G-TEG) with Integrated Temperature Driven Membrane Distillation and Novel Manganese Oxide for Lithium Extraction
Project Lead Tim Reinhardt
Project Number EE0006746