Gamma-ray shielding and Cs immobilisation of high-density magnetite (MG) and iron powder (IP) in Portland cement (PC) based-S/S treatment of Cs - contaminated soils were investigated. Gamma ray spectrometer with High Purity Germanium (HPGe) detector was used for γ-ray emission measurement. Main results reveal that the replacement of PC by MG or IP (up to 50%) leads to a marked increase (up to about 4-fold) in the γ-ray shielding performance. A higher MG amount leads to a decrease that performance. The highest yRS index of ∼26% (662 keV) was found in the case of IP addition (33.3%). The use of MG-mixtures allows reaching slightly slower yRS index jointly with the highest Cs-immobilisation of 97.8%. Results revealed MG - PC S/S as the best choice and could provide a basis for decision-making of S/S remediation of137Cs-contaminated sites.

Investigation on novel high-density grouts for in situ stabilisation/solidification of 137Cs-contaminated soils

Falciglia, Pietro P.;Romano, Stefano;Vagliasindi, Federico
2017-01-01

Abstract

Gamma-ray shielding and Cs immobilisation of high-density magnetite (MG) and iron powder (IP) in Portland cement (PC) based-S/S treatment of Cs - contaminated soils were investigated. Gamma ray spectrometer with High Purity Germanium (HPGe) detector was used for γ-ray emission measurement. Main results reveal that the replacement of PC by MG or IP (up to 50%) leads to a marked increase (up to about 4-fold) in the γ-ray shielding performance. A higher MG amount leads to a decrease that performance. The highest yRS index of ∼26% (662 keV) was found in the case of IP addition (33.3%). The use of MG-mixtures allows reaching slightly slower yRS index jointly with the highest Cs-immobilisation of 97.8%. Results revealed MG - PC S/S as the best choice and could provide a basis for decision-making of S/S remediation of137Cs-contaminated sites.
2017
Chemical Engineering (all)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11769/321541
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