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Modeling the transport behavior of 16 emerging organic contaminants during soil aquifer treatment
ISSN
1879-1026
0048-9697
Date Issued
2015
Author(s)
Hang Thuy Thi Nham, Hang Thuy Thi Nham
Noedler, Karsten
Rahman, Mohammad Azizur
Spachos, Thomas
Rusteberg, Bernd
Massmann, Gudrun
DOI
10.1016/j.scitotenv.2015.01.096
Abstract
In this study, four one-dimensional flow and transport models based on the data of a field scale experiment in Greece were constructed to investigate the transport behavior of sixteen organic trace pollutants during soil aquifer treatment. At the site, tap water and treated wastewater were intermittently infiltrated into a porous aquifer via a small pilot pond. Electrical conductivity data was used to calibrate the non-reactive transport models. Transport and attenuation of the organic trace pollutants were simulated assuming 1st order degradation and linear adsorption. Sorption was found to be largely insignificant at this site for the compounds under investigation. In contrast flow path averaged first order degradation rate constants were mostly higher compared to the literature and lay between 0.036 d(-1) for clofibric acid and 0.9 d(-1) for ibuprofen, presumably owing to the high temperatures and a well adapted microbial community originating from the wastewater treatment process. The study highlights the necessity to obtain intrinsic attenuation parameters at each site, as findings cannot easily be transferred from one site to another. (C) 2015 Elsevier B.V. All rights reserved.