Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Pretreatment Strategies for Direct Lithium Extraction from Brines: A Systematic Review

View through CrossRef
This systematic review investigates pretreatment requirements for direct lithium extraction (DLE) technologies. Lithium (Li) is a critical mineral as defined by the United States Geological Survey due to its importance for battery electric vehicles and energy storage devices. Lithium-rich brines from many sources, including salt lakes, salars, oilfields, geothermal formations, seawater, and seawater reverse osmosis systems, are being evaluated for DLE to meet growing demand. These lithium-rich brines also contain high concentrations of other elements that may interfere with DLE processes through scale formation, chemical competition, or other mechanisms. Without pretreatment, DLE technologies currently under consideration may be less efficient than anticipated or even infeasible. This systematic review aggregates and analyzes information from previous studies on DLE pretreatment. Brine chemistry is summarized. Major and minor contaminating elements that may interfere with DLE are identified, along with gaps in literature related to trace elements. Pretreatment processes are discussed in the context of the brine type and composition, as well as the DLE technology to which they were applied. This review provides context into: the importance of pretreating for specific elements present in brine; the techniques used to pretreat for various confounding elements and brine conditions; and future areas of research that will aid in commercialization of DLE. This review provides timely information for addressing implementation challenges for full-scale development of lithium extraction from brines.
Title: Pretreatment Strategies for Direct Lithium Extraction from Brines: A Systematic Review
Description:
This systematic review investigates pretreatment requirements for direct lithium extraction (DLE) technologies.
Lithium (Li) is a critical mineral as defined by the United States Geological Survey due to its importance for battery electric vehicles and energy storage devices.
Lithium-rich brines from many sources, including salt lakes, salars, oilfields, geothermal formations, seawater, and seawater reverse osmosis systems, are being evaluated for DLE to meet growing demand.
These lithium-rich brines also contain high concentrations of other elements that may interfere with DLE processes through scale formation, chemical competition, or other mechanisms.
Without pretreatment, DLE technologies currently under consideration may be less efficient than anticipated or even infeasible.
This systematic review aggregates and analyzes information from previous studies on DLE pretreatment.
Brine chemistry is summarized.
Major and minor contaminating elements that may interfere with DLE are identified, along with gaps in literature related to trace elements.
Pretreatment processes are discussed in the context of the brine type and composition, as well as the DLE technology to which they were applied.
This review provides context into: the importance of pretreating for specific elements present in brine; the techniques used to pretreat for various confounding elements and brine conditions; and future areas of research that will aid in commercialization of DLE.
This review provides timely information for addressing implementation challenges for full-scale development of lithium extraction from brines.

Related Results

Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical activi...
Lithium Prospectivity in the Northeast German and Thuringian Ba-sins
Lithium Prospectivity in the Northeast German and Thuringian Ba-sins
Over the years many boreholes have been drilled into the Northeast German Basin (NEGB) in pursuit of the exploration of hydrocarbons. As well as gaining important information regar...
Viscosification of Oilfield Brines: Guidelines for the Prevention of Unexpected Formation Damage
Viscosification of Oilfield Brines: Guidelines for the Prevention of Unexpected Formation Damage
Abstract Polymer viscosified oilfield brines have been accepted by the industry and routinely used to transport sand in gravel pack applications, to control fluid lo...
Origin of Subsurface Brines in the Sichuan Basin
Origin of Subsurface Brines in the Sichuan Basin
Abstract Subsurface brines in the Sichuan Basin occur within sedimentary rocks ranging in age from Sinian to Cretaceous, especially within rocks of Triassic age. ...
Application of bipolar electrodialysis to the generation of alkaline and acidic solutions from concentrated seawater brines from saltworks
Application of bipolar electrodialysis to the generation of alkaline and acidic solutions from concentrated seawater brines from saltworks
(English) Brines should be treated as waste and disposed accordingly. Nevertheless, brines are typically discharged back into water bodies, thereby affecting the marine environment...
Do evidence summaries increase health policy‐makers' use of evidence from systematic reviews? A systematic review
Do evidence summaries increase health policy‐makers' use of evidence from systematic reviews? A systematic review
This review summarizes the evidence from six randomized controlled trials that judged the effectiveness of systematic review summaries on policymakers' decision making, or the most...
Review of methods for lithium extraction from geothermal brines
Review of methods for lithium extraction from geothermal brines
Lithium, a highly reactive and valuable metal, is essential for the clean energy transition, powering electronic devices, electric cars, and energy storage systems. With demand for...

Back to Top