Sorbents Based on Clinoptilolite and Bentonite for the Immobilization of 137Cs, 90Sr, Uranium, and 241Am at Radioactive Waste Repositories
Сорбенты на основе клиноптилолита и бентонита для иммобилизации 137Cs, 90Sr, урана и 241Am на хранилищах радиоактивных отходов
2025-10-01
SCID: 54.1/5wttz9h7
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Abstract (AI)
Abstract Clinoptilolites from the Shivyrtui and Kholinskoe deposits modified with manganese dioxide and with titanium hydroxide and phosphate, as well as manganese dioxide modified bentonite from the 10th Khutor deposit, were prepared. The physicochemical properties of the modified samples and their ability to take up strontium, cesium, uranium, and americium were studied. The cesium, strontium, and uranium adsorption isotherms were obtained over a wide concentration range. The distribution coefficients and the static exchange capacity of the materials were determined. The effect of solution pH on the sorption of 90Sr onto natural and modified clinoptilolite and of 241Am onto natural and modified bentonite was compared. The modified sorbents show promise for use within sorption barriers to immobilize 137Cs, 90Sr, uranium, 241Am, and other transuranic elements. This would significantly reduce their migration into groundwater and enhance the safety of radioactive waste storage and disposal facilities.
Key Findings
1
Adsorption isotherms for cesium, strontium, and uranium were obtained across a wide concentration range, enabling quantitative assessment of sorption behavior.
2
Clinoptilolites from Shivyrtui and Kholinskoe deposits were successfully modified with manganese dioxide, titanium hydroxide, and phosphate for use as sorbents.
3
Distribution coefficients and static exchange capacities of the materials were determined, providing metrics of sorbent performance.
4
Manganese dioxide–modified bentonite from the 10th Khutor deposit was prepared and characterized as a sorbent.
5
Modified clinoptilolite and bentonite sorbents show promise for sorption barriers to immobilize 137Cs, 90Sr, uranium, and 241Am, reducing migration into groundwater.
6
Physicochemical properties and uptake capacities for 90Sr, 137Cs, uranium, and 241Am were experimentally studied for the modified sorbents.
7
The effect of solution pH on 90Sr sorption to natural and modified clinoptilolite and on 241Am sorption to natural and modified bentonite was compared.
Research Object
Modified natural sorbents (clinoptilolites from Shivyrtui and Kholinskoe deposits and bentonite from 10th Khutor) functionalized with manganese dioxide, titanium hydroxide, and phosphate
Research Subject
Their physicochemical sorption performance for immobilizing radionuclides (137Cs, 90Sr, uranium, 241Am): adsorption isotherms, distribution coefficients, static exchange capacity, and pH-dependent uptake relevant for sorption barriers in radioactive waste repositories
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2025-10-01
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