Speaking about the motivation behind the study, Prof. Kim exclaims, "Since we have already developed a sophisticated seawater desalination process to address the world's water needs, why not couple it with the beneficial process of mineral extraction!
In this way, we believe that such extraction can be performed in an energy-efficient, sustainable, and environment-friendly manner." The team's findings have been published online, as a research article, on 15th December 2021, in Volume 518 of the journal Desalination.
Further, the team has not only coupled the two processes, but has also developed a novel and subtle ethanol-based process to extract MgSO4. Initially, the researchers followed steps such as alkali-based magnesium hydroxide pre-precipitation from brine, and sulfuric acid-based magnesium concentration.
Finally, they treated the magnesium eluate, twice, with ethanol-the first time, to remove calcium impurities, and the second time, to precipitate the high-purity MgSO4. Interestingly, this final two-step process used the difference in solubility between magnesium and calcium sulphates in ethanol, to achieve up to 67% magnesium recovery efficiency.
Owing to the cost-effectiveness of mineral extraction from SDB, the researchers state that the obtained MgSO4 may not only be used for re-mineralizing desalinated fresh water, but also find potential applications in the pharmaceutical and food industry. Prof. Kim adds, "We hope that our study encourages further research on alternative mineral extraction processes."
Indeed, humanity, with the aid of such science, can hope to reverse environmental damage, while sustainably meeting its needs for continued technological advancements.
Research Report: "Production of high-purity MgSO4 from seawater desalination brine"
| The content herein, unless otherwise known to be public domain, is Copyright 1995-2026 Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principles for news reporting and research purposes. |