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Surface Modification of Bentonite for the Improvement of Radionuclide Sorption KCI 등재 SCOPUS

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방사성폐기물학회지 (Journal of the Korean Radioactive Waste Society)
한국방사성폐기물학회 (Korean Radioactive Waste Society)
초록

Bentonite is the most probable candidate to be used as a buffer in a deep geological repository with high swelling properties, hydraulic conductivity, thermal conductivity, and radionuclide sorption ability. Among them, the radionuclide sorption ability prevents or delays the transport of radionuclides into the nearby environment when an accident occurs and the radionuclide leaks from the canister, so it needs to be strengthened in terms of long-term disposal safety. Here, we proposed a surface modification method in which some inorganic additives were added to form NaP zeolite on the surface of the bentonite yielded at Yeonil, South Korea. We confirmed that the NaP zeolite was well-formed on the bentonite surface, which also increased the sorption efficiency of Cs and Sr from groundwater conditions. Both NaP and NaX zeolite can be produced and we have demonstrated that the generation mechanism of NaX and NaP is due to the number of homogeneous/heterogeneous nucleation sites and the number of nutrients supplied from an aluminosilicate gel during the surface modification process. This study showed the potential of surface modification on bentonite to enhance the safety of deep geological radioactive waste repository by improving the radionuclide sorption ability of bentonite.

목차
1. Introduction
2. Materials & Methods
    2.1 Preparation of Korean Natural Bentonite
    2.2 Surface Modification of Bentonite
    2.3 Characterization
    2.4 Batch Sorption Test
3. Results & Discussions
    3.1 Synthesis of NaP/bentonite Composites
    3.2 Mechanism of NaP Formation on the Surface-modified Bentonite
    3.3 FT-IR and BET/BJH Pore Analysis of NaP/bentonite Composites
    3.4 Cs and Sr Removal Efficiency of NaP/bentoniteComposites
4. Conclusions
Acknowledgements
REFERENCES
저자
  • Seokju Hong(Pohang University of Science and Technology, 77, Cheongam-ro, Nam-Gu, Pohang-si, Gyeongsangbuk-do 37673, Republic of Korea)
  • Jueun Kim(Pohang University of Science and Technology, 77, Cheongam-ro, Nam-Gu, Pohang-si, Gyeongsangbuk-do 37673, Republic of Korea)
  • Wooyong Um(Pohang University of Science and Technology, 77, Cheongam-ro, Nam-Gu, Pohang-si, Gyeongsangbuk-do 37673, Republic of Korea) Corresponding author