University of Leicester
Browse

Hydroxyapatite coatings on cement paste as barriers against radiological contamination

Download (4.98 MB)
journal contribution
posted on 2023-08-02, 07:58 authored by Susan Cumberland, Andrea Hamilton, Joanna C. Renshaw, Kieran M. Tierney, Rebecca J. Lunn

 A novel method for precipitating hydroxyapatite (HAp) onto cement paste is investigated for protecting concrete infrastructure from radiological contamination. Legacy nuclear sites contain large volumes of contaminated concrete and are expensive and dangerous to decommission. One solution is to ‘design for decommissioning’ by confining contaminants to a thin layer. Current layering methods, including paints or films, offer poor durability over plant lifespans. Here, we present a mineral-HAp-coated cement, which innovatively serves as a barrier layer to radioactive contaminants (e.g. Sr, U). HAp is shown to directly mineralise onto a cement paste block in a layer several microns thick via a two-step process: first, applying a silica-based scaffold onto a cement paste block; and second, soaking the resulting block in a PO4-enriched Ringer’s solution. Strontium ingression was tested on coated and uncoated cement paste (~ 40 × 40 × 40mm cement, 450 mL, 1000 mg L− 1 Sr) for a period of 1-week. While both coated and uncoated samples reduced the solution concentration of Sr by half, Sr was held within the HAp layer of coated cement paste and was not observed within the cement matrix. In the uncoated samples, Sr had penetrated further into the block. Further studies aim to characterise HAp before and after exposure to a range of radioactive contaminants and to develop a method for mechanical layer separation. 

Funding

This work was funded through an EPSRC grant (grant number EP/R004889/1) and industrial partners; Babcock International, EDF, and Bruce Power, administrated through the Advanced Nuclear Research centre (ANRC) at the University of Strathclyde.

History

Author affiliation

School of Geography, Geology and Environment, University of Leicester

Version

  • VoR (Version of Record)

Published in

Scientific Reports

Volume

13

Pagination

11136

Publisher

Nature Research

issn

2045-2322

Copyright date

2023

Available date

2023-08-02

Language

en

Usage metrics

    University of Leicester Publications

    Categories

    No categories selected

    Licence

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC