Literature DB >> 32044593

A model-based analysis of the reactive transport behaviour of 37 trace organic compounds during field-scale bank filtration.

Alicia Sanz-Prat1, Janek Greskowiak2, Victoria Burke2, Carlos A Rivera Villarreyes3, Julia Krause3, Bertram Monninkhoff3, Alexander Sperlich4, Sebastian Schimmelpfennig4, Uwe Duennbier4, Gudrun Massmann2.   

Abstract

Though bank filtration diminishes the loads of many trace organic compounds (TOrCs) present in the source water, still there is a wide uncertainty on the influence of local environmental conditions on biodegradation processes. This research addresses the fate and transport behaviour of 37 trace organic compounds at a bank filtration site in Germany over a relatively long-time span of six years. Using two-dimensional heat and reactive transport modelling in FEFLOW, TOrCs are classified according to their occurrence in bank filtration wells with a residence time of up to 4 months. We identify 12 persistent compounds, 20 reactive compounds and 5 transformation products formed during aquifer passage. Estimates of first-order biodegradation rate constants are given for six reactive compounds. Minimum biodegradation rate constants (i.e. maximum half-lives) are approximated for eight compounds only present in the surface water. For some compounds, a simple first-order degradation model did not yield satisfactory results and the behaviour appears to be more complex. Processes like sorption, redox- and/or temperature-dependent biodegradation and temperature-dependent desorption are suspected but incorporating these into the model was beyond the scope of this paper that provides an overview for many compounds. Results highlight the ability of the sub-surface to improve the water quality during bank filtration, yet at the same time show the persistence of several compounds in the aquifer.
Copyright © 2020 Elsevier Ltd. All rights reserved.

Keywords:  Degradation rates; Emerging organic contaminants; Lake bank filtration; Managed aquifer recharge; Metabolites; Organic micropollutants; Sorption

Year:  2020        PMID: 32044593     DOI: 10.1016/j.watres.2020.115523

Source DB:  PubMed          Journal:  Water Res        ISSN: 0043-1354            Impact factor:   11.236


  1 in total

1.  Transformation of organic micropollutants along hyporheic flow in bedforms of river-simulating flumes.

Authors:  Anna Jaeger; Malte Posselt; Jonas L Schaper; Andrea Betterle; Cyrus Rutere; Claudia Coll; Jonas Mechelke; Muhammad Raza; Karin Meinikmann; Andrea Portmann; Phillip J Blaen; Marcus A Horn; Stefan Krause; Jörg Lewandowski
Journal:  Sci Rep       Date:  2021-06-22       Impact factor: 4.379

  1 in total

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