Research advances on adsorption materials for the purification of radioactive wastewater
Научно-технические достижения в материалах-адсорбентах для очистки радиоактивных сточных вод
2025-01-01
SCID: 54.1/5qfhgtve
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adsorbent selectivityadsorption capacityadsorption materialsadsorption membrane materialscomposite adsorbentsengineered adsorbentsnatural adsorbentsphotothermal evaporation adsorbentsradioactive wastewaterradionuclides (90Sr, 137Cs, 239Pu)secondary contamination
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Abstract (AI)
With the development of nuclear industry, the prevention and control of radioactive risks remains a critical challenge. Radioactive wastewater contains various radionuclides, such as 90 Sr, 137 Cs, and 239 Pu, which pose threats to both the environment and human health. Effective treatment and purification of radioactive wastewater are therefore crucial. Adsorption methods, due to their efficiency and energy-saving characteristics, play a crucial role in radioactive wastewater purification technologies. This review summarizes the research progress on adsorption materials used for radioactive wastewater purification, including natural adsorbents, composite adsorbents, engineered adsorbents, adsorption membrane materials, and photothermal evaporation adsorbents. The advantages, disadvantages, and future prospects of these materials are analyzed. Studies indicate that adsorption materials hold great potential in the field of radioactive wastewater treatment, and however, issues such as low adsorption capacity, insufficient selectivity, and the risk of secondary contamination still remain. This paper reviewed the research advances of adsorption materials used for the purification of radioactive wastewater, and discussed their advantages, limitations, and future research directions.
Key Findings
1
Adsorption methods are important for radioactive wastewater purification due to high efficiency and energy-saving characteristics.
2
Current adsorption materials exhibit issues of low adsorption capacity and insufficient selectivity for radionuclides like 90Sr, 137Cs, and 239Pu.
3
Future research should address material limitations and optimize advantages to realize the potential of adsorption-based radioactive wastewater treatment.
4
Reviewed adsorption materials include natural adsorbents, composite adsorbents, engineered adsorbents, adsorption membrane materials, and photothermal evaporation adsorbents.
5
There is a risk of secondary contamination associated with existing adsorption materials for radioactive wastewater treatment.
Research Object
Adsorption materials used for purification of radioactive wastewater
Research Subject
Their performance characteristics and limitations in removing radionuclides (e.g., 90Sr, 137Cs, 239Pu) from radioactive wastewater, including adsorption capacity, selectivity, risks of secondary contamination, and material-specific advantages and disadvantages
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2025-01-01
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