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Kiecak, A. ; Malina, G.* ; Kret, E.* ; Szklarczyk, T.*

Applying numerical modeling for designing strategies of effective groundwater remediation.

Environ. Earth Sci. 76:248 (2017)
DOI
Open Access Gold möglich sobald Verlagsversion bei der ZB eingereicht worden ist.
Selection of effective groundwater remediation scenarios is a complex issue that requires understanding of contaminants’ transport processes. The effectiveness of cleanup measures may be verified by fate and transport numerical modeling. The goal of this work was to present the usefulness of fate and transport modeling for planning, verification and fulfillment of effective groundwater remediation methods. Selection methodology was developed, which is based on results of numerical flow and transport modeling. A field site located in south-east Poland was selected as a case study, in which groundwater contamination of trichloroethene and tetrachloroethene was detected. The results indicated that “pump and treat” was the most effective among the studied remediation methods, followed by permeable reactive barrier and in situ chemical oxidation. Natural attenuation-based remediation was demonstrated to be the least suitable, as it requires the longest time to reach predefined remediation goals, principally due to low sorption capacity and unfavorable hydrogeochemical conditions for biodegradation. Fate and transport numerical modeling allowed simulating different remediation strategies, and thus the decision-making process was facilitated.
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Publikationstyp Artikel: Journalartikel
Dokumenttyp Wissenschaftlicher Artikel
Schlagwörter Fate And Transport ; Groundwater ; Numerical Modeling ; Pce ; Remediation ; Tce; Multicriteria Decision-analysis; Contaminated Groundwater; Climate-change; Optimization; Aquifer; Management; Scenarios; Scale; Bioremediation; Identification
ISSN (print) / ISBN 1866-6280
e-ISSN 1866-6299
Quellenangaben Band: 76, Heft: 6, Seiten: , Artikelnummer: 248 Supplement: ,
Verlag Springer
Verlagsort New York
Begutachtungsstatus Peer reviewed