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March 18, 2026Materials2 citationsOpen Access

Potential of Wollastonite-Based Brushite Cement for the Conditioning of Radioactive Waste Contaminated by 90Sr

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JJJihane JdainiCCCéline Cau Dit CoumesYBYves Barré

Key Points

  • This work aims to evaluate wollastonite-based brushite cement for the stabilization of radioactive waste contaminated by strontium-90.
  • Evaluated two formulations: commercial binder (WBC-C) and optimized binder (WBC-O).
  • Conducted mineralogical characterizations using XRD, TGA, XRF, SEM-EDX, and Raman spectroscopy.
  • Assessed stability under gamma irradiation and water radiolysis effects.
  • Examined strontium leaching using ANSI/ANS-16.1-2003 (R2008) procedure.
  • WBC-C showed stability under gamma irradiation with minimal effects from water radiolysis.
  • Strontium leaching occurred via a two-stage release mechanism involving surface wash-off and diffusion.
  • The apparent diffusion coefficient of strontium in WBC-C was significantly lower than in standard Portland cement.
  • WBC-O exhibited improved strontium retention due to a higher aluminum content refining the mesopores.

Abstract

This work investigates the potential of wollastonite-based brushite cement (WBC) for the stabilization and solidification of radioactive waste contaminated by 90Sr. This phosphate binder was formed by the reaction of wollastonite (CaSiO3) with a phosphoric acid solution containing borax and metallic cations (Al3+, Zn2+). Two cement pastes were investigated: a commercial binder (WBC-C) and an optimized formulation (WBC-O), produced using a zinc-free mixing solution with a higher aluminum content than that of WBC-C. Mineralogical characterizations using XRD, TGA, XRF, SEM-EDX, and Raman spectroscopy showed that both materials mainly contained amorphous hydrated silica and calcium aluminophosphate, along with crystalline brushite, residual wollastonite, and quartz. The stability of WBC-C under γ-irradiation was evaluated up to a dose of 1 MGy. The only observable effect was water radiolysis, leading to dihydrogen production at yields comparable to Portland cement matrices and geopolymers. Strontium leaching, assessed using the ANSI/ANS-16.1-2003 (R2008) procedure, followed a two-stage release mechanism combining surface wash-off and diffusion. The apparent diffusion coefficient Da of Sr in WBC-C was markedly lower than typical values reported for Portland cement matrices. WBC-O exhibited enhanced Sr retention, possibly due to its higher aluminum content, which refines mesopores and reduces diffusion pathways accessible to Sr. WBC binders therefore appear to be promising candidates for strontium immobilization.

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Cite This Study

Jdaini et al. (2026) studied this question.

synapsesocial.com/papers/69ba428e4e9516ffd37a2f6dhttps://doi.org/10.3390/ma19061136
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