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Published in: Environmental Earth Sciences 2/2013

01-05-2013 | Special Issue

Turbidity as a proxy for total suspended solids (TSS) and particle facilitated pollutant transport in catchments

Authors: Hermann Rügner, Marc Schwientek, Barbara Beckingham, Bertram Kuch, Peter Grathwohl

Published in: Environmental Earth Sciences | Issue 2/2013

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Abstract

Transport of hydrophobic organic pollutants in rivers is mainly coupled to transport of suspended particles. Turbidity measurements are often used to assess the amount of suspended solids in water. In this study, a monitoring campaign is presented where the total concentration of polycyclic aromatic hydrocarbons (PAHs), the amount of total suspended solids (TSS), and turbidity was measured in water samples from five neighboring catchments in southwest Germany. Linear correlations of turbidity and TSS were obtained which were in close agreement to the literature data. From linear regressions of turbidity versus total PAH concentrations in water, mean concentrations of PAH on suspended particles could be calculated and these varied by catchment. These values furthermore comprise a robust measure of the average sediment quality in a given catchment. Since in the catchments investigated in this study, PAH concentrations on suspended particles were stable over a large turbidity range (1–114 Nephelometric Turbidity Units), turbidity could be used as a proxy for total PAHs and likely other highly hydrophobic organic pollutants in river water if the associated correlations are established. Based on that, online monitoring of turbidity (e.g., by optical backscattering sensors) seems very promising to determine annual pollutant fluxes.

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Metadata
Title
Turbidity as a proxy for total suspended solids (TSS) and particle facilitated pollutant transport in catchments
Authors
Hermann Rügner
Marc Schwientek
Barbara Beckingham
Bertram Kuch
Peter Grathwohl
Publication date
01-05-2013
Publisher
Springer-Verlag
Published in
Environmental Earth Sciences / Issue 2/2013
Print ISSN: 1866-6280
Electronic ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-013-2307-1

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