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In situ soil flushing to remediate confined soil contaminated with PFOS- an innovative solution for emerging environmental issue.

Authors :
Senevirathna, S.T.M.L.D.
Mahinroosta, Reza
Li, Miao
KrishnaPillai, Karthika
Source :
Chemosphere. Jan2021, Vol. 262, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

PerFluoroOctane Sulfonate (PFOS), is a toxic anthropogenic chemical that has been produced and gradually released into the environment for the past seven decades. An accurate audit of global PFOS contamination and contaminated sites are yet to be published. The available technologies to remediate PFOS contaminated soil are limited and often basic strategies such as temporary soil containment are adopted as immediate measures to manage the contaminated sites. In this study, the in situ soil flushing technique is assessed for its capacity to remediate soil contaminated with PFOS. A complete treatment process with several operation units was proposed such as solvent flushing, ground water pumping, solvent recovery and water treatment for PFOS. Potential solvents were identified and it was observed that more than 98% PFOS removal could be attained by flushing with five bed volumes of 50% ethanol. In addition, the study investigated thirteen commercially available filter materials and identified PFA694E, K6362, MP 62, Amberlite IRA 67 and Dowexoptopore V493 as suitable to eliminate PFOS with competitive PFOS adsorption characteristics. The proposed method can be recommended to remediate PFOS in recognised contaminated soils, such as those at defence sites. Furthermore, a contaminated site with favourable characteristics to implement the suggested method was identified in Australia and described in this paper. • Limited number of techniques are available to remediate soil contaminated with PFOS. • In-situ soil flushing technique was investigated to remediate soil contained with PFOS. • A full treatment process with essential unit operations was proposed. • Over 98% PFOS removal was observed after flushing with five bed volumes of 50% ethanol. • Thirteen commercially available filter materials investigated for PFOS adsorption characteristics. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00456535
Volume :
262
Database :
Academic Search Index
Journal :
Chemosphere
Publication Type :
Academic Journal
Accession number :
146874282
Full Text :
https://doi.org/10.1016/j.chemosphere.2020.127606