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Technetium immobilization by materials through sorption and redox-driven processes: A literature review

Authors :
Carolyn I. Pearce
Robert C. Moore
Joseph W. Morad
R. Matthew Asmussen
Sayandev Chatterjee
Amanda R. Lawter
Tatiana G. Levitskaia
James J. Neeway
Nikolla P. Qafoku
Mark J. Rigali
Sarah A. Saslow
Jim E. Szecsody
Praveen K. Thallapally
Guohui Wang
Vicky L. Freedman
Source :
Science of The Total Environment. 716:132849
Publication Year :
2020
Publisher :
Elsevier BV, 2020.

Abstract

The objective of this review is to evaluate materials for use as a barrier or other deployed technology to treat technetium-99 (Tc) in the subsurface. To achieve this, Tc interactions with different materials are considered within the context of remediation strategies. Several naturally occurring materials are considered for Tc immobilization, including iron oxides and low solubility sulfide phases. Synthetic materials are also considered, and include tin-based materials, sorbents (resins, activated carbon, modified clays), layered double hydroxides, metal organic frameworks, cationic polymeric networks and aerogels. All of the materials were evaluated for their potential in-situ and ex-situ performance with respect to long-term Tc uptake and immobilization, environmental impacts and deployability. Other factors such as the technology maturity, cost and availability were also considered. Given the difficulty of evaluating materials under different experimental conditions (e.g., solution chemistry, redox conditions, solution to solid ratio, Tc concentration etc.), a subset of these materials will be selected, on the basis of this review, for subsequent standardized batch loading tests.

Details

ISSN :
00489697
Volume :
716
Database :
OpenAIRE
Journal :
Science of The Total Environment
Accession number :
edsair.doi.dedup.....1407ee35fe662f5218c02cbf2ef92f84
Full Text :
https://doi.org/10.1016/j.scitotenv.2019.06.195