A comparative study between low- and high-tech methods for the detection and mitigation of illicit connections in stormwater systems

Journal Article (2023)
Author(s)

Remy Schilperoort (Partners4UrbanWater)

Johan Post (Partners4UrbanWater)

Martijn Klootwijk (Gemeente Breda)

Bas Hoefeijzers (Gemeente Breda)

Arjo Hof (Municipality of Almere)

Bert Palsma (Stichting Toegepast Onderzoek Waterbeheer)

Imke Leenen (H2Oké Water & Health Consultancy)

Konstantinos F. Makris (Partners4UrbanWater)

Jeroen G. Langeveld (TU Delft - Civil Engineering & Geosciences, Partners4UrbanWater)

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Research Group
Sanitary Engineering
DOI related publication
https://doi.org/10.2166/wst.2023.309 Final published version
More Info
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Publication Year
2023
Language
English
Research Group
Sanitary Engineering
Journal title
Water Science and Technology
Issue number
7
Volume number
88
Pages (from-to)
1833-1846
Downloads counter
399
Collections
Institutional Repository
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Abstract

Illicit connections of wastewater to stormwater systems are the main drawback of separate sewer systems, as they lead to a direct discharge of untreated wastewater to the aquatic environment. Consequently, several inspection methods have been developed for detecting illicit connections. This study simultaneously applied several low- and high-tech methods for the detection of illicit connections in the same catchment (De Heuvel, the Netherlands). The methods included mesh wire screens for capturing coarse contamination, measurements of electroconductivity and temperature, sampling and quantification of Escherichia coli and extended-spectrum ß-lactamase-producing E. coli (ESBL-EC), DNA analysis via quantitative polymerase chain reaction for human-, dog-, and bird-specific fecal indicators, and distributed temperature sensing. Significant illicit connections could be identified using all methods. Nonetheless, hydraulic conditions and, predominantly, the sewage volume determine whether a misconnection can be detected by especially the low-tech methods. Using these results, the identified misconnections were repaired and biological and DNA analyses were repeated. Our results demonstrate that there were no changes in E. coli or ESBL-EC before and after mitigation, suggesting that these common markers of fecal contamination are not specific enough to evaluate the performance of mitigation efforts. However, a marked decrease in human wastewater markers (HF183) was observed.