There is a shift from internal combustion engines to electric vehicles (EVs), with the primary goal of reducing CO2 emissions from road transport. Battery technology is at the heart of this transition as it is vital to hybrid and fully electric vehicles’ performance, affordability, and reliability. However, it is not abundant in nature. Lithium has many uses, one of which is heat transfer applications; synthesized as an alloying agent for batteries, glass, and ceramics, it therefore has a high demand on the global market. Lithium can be attained by extraction from other natural resources in igneous rocks, in the waters of mineral springs, and geothermal brine. During the research, geothermal brine was used because, from the technological po...
The electrification of our world is driving a strong increase in demand for lithium. Energy storage ...
Geothermal water is rich in lithium (Li) and it can be recovered by adsorption and other methods. Pr...
Extracting lithium electrochemically from seawater has the potential to resolve any future lithium s...
Lithium is the principal component of high-energy-density batteries and is a critical material neces...
Lithium is the principal component of high-energy-density batteries and is a critical material neces...
Lithium is the principal component of high-energy-density batteries and is a critical material neces...
The project implements a novel approach to extract lithium from a geothermal brine with minimal wate...
The demand for lithium has risen steadily in the last few decades because of the increased use of re...
The project implements a novel approach to extract lithium from a geothermal brine with minimal wate...
Lithium has become an important raw material in various sectors because of the continuously growing ...
Demand for lithium, a major battery component, is increasing in the ongoing clean energy transition....
The demand of lithium for electric vehicles and energy storage devices is increasing rapidly, thus n...
© 2019 Elsevier Ltd. This work aimed to evaluate the enrichment of lithium (Li) from a simulated sal...
In a world transitioning towards renewable energies and lithium-battery powered cars, there has been...
Lithium has become an important raw material in various sectors because of the continuously growing ...
The electrification of our world is driving a strong increase in demand for lithium. Energy storage ...
Geothermal water is rich in lithium (Li) and it can be recovered by adsorption and other methods. Pr...
Extracting lithium electrochemically from seawater has the potential to resolve any future lithium s...
Lithium is the principal component of high-energy-density batteries and is a critical material neces...
Lithium is the principal component of high-energy-density batteries and is a critical material neces...
Lithium is the principal component of high-energy-density batteries and is a critical material neces...
The project implements a novel approach to extract lithium from a geothermal brine with minimal wate...
The demand for lithium has risen steadily in the last few decades because of the increased use of re...
The project implements a novel approach to extract lithium from a geothermal brine with minimal wate...
Lithium has become an important raw material in various sectors because of the continuously growing ...
Demand for lithium, a major battery component, is increasing in the ongoing clean energy transition....
The demand of lithium for electric vehicles and energy storage devices is increasing rapidly, thus n...
© 2019 Elsevier Ltd. This work aimed to evaluate the enrichment of lithium (Li) from a simulated sal...
In a world transitioning towards renewable energies and lithium-battery powered cars, there has been...
Lithium has become an important raw material in various sectors because of the continuously growing ...
The electrification of our world is driving a strong increase in demand for lithium. Energy storage ...
Geothermal water is rich in lithium (Li) and it can be recovered by adsorption and other methods. Pr...
Extracting lithium electrochemically from seawater has the potential to resolve any future lithium s...