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Li2O-Al2O3-SiO2-B2O3 구조의 무기합성매질을 이용한 LiCl-KCl 공융염 내 희토류 핵종(Nd)의 분리 및 고화에 관한 기초연구

A Basic Study on Capture and Solidification of Rare Earth Nuclide (Nd) in LiCl-KCl Eutectic Salt Using an Inorganic Composite With Li2O-Al2O3-SiO2-B2O3 System

  • 투고 : 2017.02.15
  • 심사 : 2017.03.21
  • 발행 : 2017.03.30

초록

사용후핵연료 파이로프로세싱에서는 방사성 희토류 염화물($RECl_3$)을 함유한 LiCl-KCl 공융염폐기물이 발생되며, 핫셀시설에서 운영을 목적으로 단순한 형태의 공융염폐기물 처리공정을 개발하는 것이 필요하다. 본 연구에서는, LiCl-KCl 공융염폐기물 내 희토류 핵종 분리/고화공정의 단순화를 목적으로 $Li_2O-Al_2O_3-SiO_2-B_2O_3$계의 무기합성매질을 이용하여 LiCl-KCl 공융염 내 희토류 핵종(Nd)을 분리한 후 분리생성물을 바로 고화하는 시험을 실시하였다. 공융염 내 희토류 염화물($NdCl_3$) 대비 0.67의 무게비에 해당하는 무기합성매질의 양으로도 Nd 핵종을 98wt% 이상 분리할 수 있었고, 이 때 얻은 희토류 핵종 포집생성물은 약 50wt% 수준의 희토류 산화물 함량을 보유하고 있었으며, 이 포집생성물을 화학적 내구성이 우수한 단일상의 균질한 유리고화체로 제조할 수 있었다. 이 결과들은 LiCl-KCl 공융염폐기물 내 희토류 핵종의 분리/고화공정을 단순화하기 위한 방안수립에 활용될 수 있을 것이다.

The pyroprocessing of spent nuclear fuel generates LiCl-KCl eutectic waste salt containing radioactive rare earth nuclides. It is necessary to develop a simple process for the treatment of LiCl-KCl eutectic waste in a hot-cell facility. In this study, capture and solidification of a rare earth nuclide (Nd) in LiCl-KCl eutectic salt using an inorganic composite with a $Li_2O-Al_2O_3-SiO_2-B_2O_3$ system was conducted to simplify the existing separation and solidification process of rare earth nuclides in LiCl-KCl eutectic waste salt from the pyroprocessing of spent nuclear fuel. More than 98wt% of Nd in LiCl-KCl eutectic salt was captured when the mass ratio of the composite was 0.67 over $NdCl_3$ in the eutectic salt. The content of $Nd_2O_3$ in the Nd captured-composite reached about 50wt%, and this composite was directly fabricated into a homogeneous and chemical resistant glass waste in a monolithic form. These results will be utilized in designing a process to simplify the existing separation and solidification process.

키워드

참고문헌

  1. K.R. Kim, D.H. Ahn, J.B. Shim, S. Paek, I.T. Kim, and Y. Jung, "Pyrochemical extraction analysis of an immiscible molten LiCl-KCl/Cd system", J. Nucl. Chem., 304, 329-335 (2015). https://doi.org/10.1007/s10967-014-3824-4
  2. D. Rappleye, S.M. Jeong, and M. Simpson, "Application of multivariate analysis techniques to safeguards of the electrochemical treatment of used nuclear fuel", J. Nucl. Energy, 77, 265-272 (2015). https://doi.org/10.1016/j.anucene.2014.11.023
  3. H.S. Lee, G.I. Park, G.H. Kang, J.M. Hur, J.G. Kim, D.H. Ahn, Y.Z. Cho, and E.H. Kim, "Pyroprocessing Technology Development at KAERI", Nucl. Eng. Technol., 43(4), 317-328 (2011). https://doi.org/10.5516/NET.2011.43.4.317
  4. B.L. Meltcalfe and I.W. Donald, "Candidate Wasteforms for the Immobilization of Chloride-Containing Radioactive Waste", J. Non-Cryst. Solids, 348, 225-229 (2004). https://doi.org/10.1016/j.jnoncrysol.2004.08.173
  5. H.C. Eun, J.H. Choi, T.K. Lee, I.H. Cho, N.Y. Kim, J.U. YU, H.S. Park, and D.H. Ahn, "Separation Characteristics of $NdCl_3$ From LiCl-KCl Eutectic Salt in a Reactive Distillation Process using $Li_2CO_3$ or $K_2CO_3$", JNFCWT, 13(3), 181-186 (2015).
  6. J.H. Choi, I.H. Cho, H.C. Eun, H.S. Park, Y.Z. Cho, K.R. Lee, G.I. Park, S.H. Kim, C.H. Shin, and J.K. Kim, "Fabrication and physical properties of lanthanide oxide glass wasteform for the immobilization of lanthanide oxide wastes generated form pyrochemical process", J. Radioanal. Nucl. Chem., 299(3), 1731-1738 (2014). https://doi.org/10.1007/s10967-013-2863-6
  7. C.W. Kim, J.Y. Kim, S.J. Maeng, J.K. Park, and T.W. Hwang, "Evaluation of Chemical Durability of Vitrified Forms for Simulated Radioactive Waste Using Product Consistency Test(PCT) and Vapor Hydration Test(VHT)", J. Korean Rad. Was. Soci., 4(3), 227-234 (2006)
  8. C.M. Jantzen, N.E. Bibler, D.C. Beam, C.L. Crawford, and M.A. Picket, Characterization of the defense waste processing facility(DWPF) environmental assessment(EA) glass standard reference material(U), Westinghouse Savannah River Co Report, 1-96, WSRC-TR-92-346 (1992).
  9. J.H. Choi, H.C. Eun, K.R. Lee, I.H. Cho, T.K. Lee, H.S. Park, and D.H. Ahn, "Fabrication of rare earth calcium phosphate glass waste forms for the immobilization of rare earth phosphates generated from pyrochemical process", J. Non-Cryst. Solids, 434, 79-84 (2016). https://doi.org/10.1016/j.jnoncrysol.2015.12.017