Metal Recovery from Natural Saline Brines with an Electrochemical Ion Pumping Method Using Hexacyanoferrate Materials as Electrodes
Abstract
The electrochemical ion pumping device is a promising alternative for the development of the industry of recovering metals from natural sourcessuch as seawater, geothermal water, well brine, or reverse osmosis brineusing electrochemical systems, which is considered a non-evaporative process. This technology is potentially used for metals like Li, Cu, Ca, Mg, Na, K, Sr, and others that are mostly obtained from natural brine sources through a combination of pumping, solar evaporation, and solvent extraction steps. As the future demand for metals for the electronic industry increases, new forms of marine mining processing alternatives are being implemented. Unfortunately, both land and marine mining, such as off-shore and deep sea types, have great potential for severe environmental disruption. In this context, a green alternative is the mixing entropy battery, which is a promising technique whereby the ions are captured from a saline natural source and released into a recovery solution with low ionic force using intercalation materials such as Prussian Blue Analogue (PBA) to store cations inside its crystal structure. This new technique, called electrochemical ion pumping, has been proposed for water desalination, lithium concentration, and blue energy recovery using the difference in salt concentration. The raw material for this technology is a saline solution containing ions of interest, such as seawater, natural brines, or industrial waste. In particular, six main ions of interestNa+, K+, Mg2+, Ca2+, Cl?, and SO
Más información
| Título según WOS: | Metal Recovery from Natural Saline Brines with an Electrochemical Ion Pumping Method Using Hexacyanoferrate Materials as Electrodes |
| Título según SCOPUS: | Metal Recovery from Natural Saline Brines with an Electrochemical Ion Pumping Method Using Hexacyanoferrate Materials as Electrodes |
| Título de la Revista: | NANOMATERIALS |
| Volumen: | 13 |
| Número: | 18 |
| Editorial: | MDPI |
| Fecha de publicación: | 2023 |
| Idioma: | English |
| DOI: |
10.3390/nano13182557 |
| Notas: | ISI, SCOPUS |