Contribution to a Sustainable Society: Biosorption of Precious Metals Using the Microalga Galdieria

Int J Mol Sci. 2024 Jan 5;25(2):704. doi: 10.3390/ijms25020704.

Abstract

The red microalga Galdieria sp. is an extremophile that inhabits acidic hot sulphur springs and grows heterotrophically to a high cell density. These characteristics make Galdieria suitable for commercial applications as stable mass production is the key to success in the algae business. Galdieria has great potential as a precious metal adsorbent to provide a sustainable, efficient and environmentally benign method for urban mining and artisanal small-scale gold mining. The efficiency and selectivity in capturing precious metals, gold and palladium from metal solutions by a Galdieria-derived adsorbent was assessed relative to commercially used adsorbents, ion exchange resin and activated charcoal. As it is only the surface of Galdieria cells that affect metal adsorption, the cell content was analysed to determine the manner of utilisation of those metabolites. Galdieria was shown to be protein-rich and contain beneficial metabolites, the levels of which could shift depending on the growth conditions. Separating the cell content from the adsorbent could improve the adsorption efficiency and reduce CO2 emissions during the metal collection process. The commercial applications of Galdieria appear promising: growth is quick and dense; the precious metal adsorption capacity is highly efficient and selective in acidic conditions, especially at low metal concentrations; and the cell content is nutrient-rich.

Keywords: ASGM; Galdieria; double cropping; ergothioneine; gold; palladium; urban mining.

MeSH terms

  • Adsorption
  • Charcoal
  • Commerce
  • Gold
  • Microalgae*

Substances

  • Gold
  • Charcoal

Grants and funding

This research received no external funding.