Matrices for radioactive waste immobilization: a review

Матрицы для иммобилизации радиоактивных отходов: обзор
Ritu Kumari Pilania, Charu Lata Dube
2023-09-28

glass-ceramics matriceshigh-level wasteleaching behaviorradiation resistanceradioactive waste immobilization
Nuclear energy is considered a clean, reliable, and an inexhaustible energy source for power generation. Nuclear power is harnessed from nuclear fission reactions in a dedicated power plant. The by-products (produced in the nuclear power plant) are radioactive and pose a threat to the environment. The safe disposal of nuclear waste is vital to ensure the sustainable use of the nuclear energy. The immobilization of radioactive waste before final disposal is essential for the interim storage and transportation. This review summarizes the recent work on glass, ceramics, and glass–ceramics matrices to immobilize high-level waste. The synthesis methods, leaching behavior, and radiation resistance of matrices are discussed briefly.
1
Glass, ceramic, and glass–ceramic matrices are reviewed as materials for immobilizing high-level radioactive waste.
2
Immobilization of radioactive waste is necessary before final disposal to support safe interim storage and transportation.
3
Matrix performance is evaluated through chemical durability against leaching and resistance to radiation damage, although the abstract provides no quantitative results.
4
Safe disposal of radioactive nuclear waste is essential for the sustainable use of nuclear energy because waste products threaten the environment.
5
The review compares synthesis methods, leaching behavior, and radiation resistance of these immobilization matrices.

glass, ceramic, and glass–ceramic matrices for immobilizing high-level radioactive waste

their synthesis methods, leaching behavior, and radiation resistance

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Publication Date
2023-09-28
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Ritu Kumari Pilania
Charu Lata Dube
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