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Recent progress in advanced functional materials for adso 2025 Coordination

Muruganantham Rethinasabapathy, Seyed Majid Ghoreishian

2026encobalt removaladsorptionwastewater treatmentheavy metalsradionuclidesadvanced materials

Abstract

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Water pollution jeopardizes environmental ecosystems and human health. The presence of cobalt ions (Co2+) and radionuclides (60Co) in industrial and radioactive effluents pose serious threats to environmental ecosystems and human health. Thus, removing Co2+ and 60Co from wastewater is essential for environmental and health reasons. Many techniques have been used to remove heavy metal ions and radionuclides from wastewater, such as adsorption, ion exchange, co-precipitation, chemical reduction, and ultrafiltration. However, adsorption is widely used and one of the most efficient techniques for treating heavy metal or radionuclide-contaminated wastewater because it is more straightforward to manage. Furthermore, several types of adsorbents have been used for this purpose. This paper comprehensively reviews and systematically provides an up-to-date summary of research and developments on various advanced functional materials as adsorbents, such as carbon-based materials, metal-organic frameworks, zeolites, clays, metal oxides, silica, sulfides, phosphates, layered double hydroxides, and biosorbents, that have been investigated for the efficient adsorption of Co2+ or 60Co polluted water. In this study, adsorbents are assessed in terms of their removal efficiencies, unique features, operating conditions (adsorbent dosage, initial Co2+ concentration, solution pH, contact time, and temperature), and mechanisms.

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Cite This Work

@article{67e20de4-d626-4fd7-8cbe-1c46583efc65,
  title={Recent progress in advanced functional materials for adso 2025 Coordination },
  author={Muruganantham Rethinasabapathy and Seyed Majid Ghoreishian},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Recent progress in advanced functional materials for adso 2025 Coordination 
AU  - Muruganantham Rethinasabapathy
AU  - Seyed Majid Ghoreishian
PY  - 2026
LA  - en
ER  -

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