Related Experiment Video
Updated: Aug 5, 2026

An Efficient Method for Selective Desalination of Radioactive Iodine Anions by Using Gold Nanoparticles-Embedded Membrane Filter
Published on: July 13, 2018
Functional polysaccharide-based biosorbents as efficient green alternatives for radionuclide removal from radioactive
Mohamed Mohamady Ghobashy1, Huda Yousif Sharef2,3, Muneer Baata4
1Radiation Research of Polymer Department, National Center for Radiation Research and Technology (NCRRT), Atomic Energy Authority P. O. Box. 29, Nasr City Cairo Egypt Mohamed_ghobashy@yahoo.com Mohamed.ghobashy@eaea.org.eg.
Abstract:
Radioactive waste presents persistent environmental and health challenges, creating an urgent need for remediation materials that are not only effective and selective but also sustainable. Conventional treatment methods often suffer from high cost, limited selectivity, and secondary waste generation, prompting growing interest in biopolymer-based alternatives. Polysaccharides including chitosan, alginate, cellulose, starch, carrageenan, and pectin have emerged as highly promising platforms for radioactive ion removal due to their natural abundance, biodegradability, and rich surface chemistry. Their functional groups (hydroxyl, amino, carboxyl, and sulfate) enable strong coordination with diverse radionuclides, including actinides, fission products, and activation products. This review critically examines the structure-property relationships governing radionuclide adsorption by polysaccharide-based materials, with particular attention to chemical modification strategies, including grafting, cross-linking, phosphorylation, and hybridization. These approaches significantly enhance adsorption capacity, selectivity, and stability, with reported Uranium(vi) uptake exceeding 600 mg g-1 for engineered systems. Advanced composites, including polysaccharide-polysaccharide hybrids and polysaccharide-based metal-organic frameworks, are highlighted for their potential in treating complex radioactive waste streams. Future perspectives focus on multifunctional material design, regeneration efficiency, and scalability to advance polysaccharide-based adsorbents toward practical nuclear waste management applications.
