Published March 2019 | Version v1
Journal article

Radiological evaluation of industrial residues for construction purposes correlated with their chemical properties

  • 1. Hasselt University, CMK, Nuclear Technological Centre (NuTeC), Faculty of Engineering Technology, Agoralaan, Gebouw H, 3590 Diepenbeek (Belgium)
  • 2. School of Natural and Built Environment, Queen's University Belfast, David Keir Bldg., 39-123 Stranmillis Road, Belfast BT9 5AG (United Kingdom)
  • 3. College of Engineering, Mathematics and Physical Sciences, Harrison Bldg., University of Exeter, North Park Road, Exeter EX4 4QF (United Kingdom)

Description

Highlights: • The NOR contents of the surveyed residues fit well with recent NOR databases. • The radioactive equilibrium in the decay chains fits well with the literature data. • Strong correlation was found between the NOR contents and certain chemical elements. • The chemical composition can be used as a source apportionment tool for NOR content. • The emanation was low for residues generated under high-temperature processes. -- Abstract: This study characterises the naturally occurring radionuclide (NOR) contents of a suite of secondary raw materials or industrial residues that are normally disposed of in landfills or lagoons but now are increasingly used in green concretes. This includes ashes from a variety of industrial processes and red mud from aluminium production, as well as air pollution control residue and cement kiln dust. The chemical composition of the samples was determined with X-ray fluorescence spectroscopy (XRF). The Ra-226, Th-232 and K-40 activity concentrations were obtained by gamma spectrometry, and the results were compared with recently published NOR databases. The correlation between the NOR contents and the main chemical composition was investigated. The radioactive equilibrium in the U-238 chain was studied based on the determination of progeny isotopes. The most commonly used calculation methods (activity concentration index and radium equivalent concentration) were applied to classify the samples. The radon exhalation rate of the samples was measured, and the radon emanation coefficient was calculated. Significant correlation was found between the NORs and certain chemical components. The massic exhalation demonstrated a broad range, and it was found that the emanation coefficients were significantly lower in the case of the residues generated as a result of high-temperature combustion processes. The results showed a weak correlation between the Ra-226 concentration and the radon exhalation. This emphasises that managing the Ra-226 content of recycled material by itself is not sufficient to control the radon exhalation of recycled materials used in building products. The investigated parameters and their correlation behaviour could be used to source apportion materials found during the process of landfill mining and recovery of material for recycling.

Additional details

Additional titles

Augmented title (English)
Gamma spectrometry;Radon emanation;Radon exhalation;Recycling;Red mud

Identifiers

DOI
10.1016/j.scitotenv.2018.12.043;
PII
S0048969718348824;

Publishing Information

Journal Title
Science of the Total Environment
Journal Volume
658
Journal Page Range
p. 141-151
ISSN
0048-9697
CODEN
STENDL

Optional Information

Copyright
Copyright (c) 2018 Elsevier B.V. All rights reserved.