In situ functionalization of iron oxide particles with alginate: a promising biosorbent for retention of metal ions

AR Lucaci, D Bulgariu, L Bulgariu - Polymers, 2021 - mdpi.com
In this study, alginate extracted from marine algae biomass was used for the
functionalization of iron oxide particles obtained in situ. This procedure ensured a complete …

Equilibrium and Kinetics Studies of Metal Ions Biosorption on Alginate Extracted from Marine Red Algae Biomass (Callithamnion corymbosum sp.)

AR Lucaci, D Bulgariu, I Ahmad, L Bulgariu - Polymers, 2020 - mdpi.com
Biosorption is a viable alternative that can be used to remove heavy metal ions from
aqueous effluents, as long as the biosorbent used is cost-effective and efficient. To highlight …

[PDF][PDF] In-Situ Functionalization of Iron Oxide Particles with Alginate: A Promising Biosorbent for Metal Ions Retention. Polymers 2021, 13, 3554

AR Lucaci, D Bulgariu, L Bulgariu - 2021 - researchgate.net
In this study, alginate extracted from marine algae biomass was used for the
functionalization of iron oxide particles obtained in situ. This procedure ensured a complete …

[PDF][PDF] In Situ Functionalization of Iron Oxide Particles with Alginate: A Promising Biosorbent for Retention of Metal Ions. Polymers 2021, 13, 3554

AR Lucaci, D Bulgariu, L Bulgariu - 2021 - academia.edu
In this study, alginate extracted from marine algae biomass was used for the
functionalization of iron oxide particles obtained in situ. This procedure ensured a complete …

[PDF][PDF] A comparative study of Zn (II) ions biosorption from aqueous solution on red marine algae biomass and alginate

AR LUCACI, L BULGARIU - … of the Polytechnic Institute of Iasi …, 2020 - bipcic.icpm.tuiasi.ro
The current trend of specialized research in environmental bioremediation is focused on
studies related to the biosorption of metal ions on biological materials. Algae biomass is of …