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Tracking pollutants in a municipal sewage network impairing the operation of a wastewater treatment plant

Title
Tracking pollutants in a municipal sewage network impairing the operation of a wastewater treatment plant
Type
Article in International Scientific Journal
Year
2022
Authors
Sa, MFT
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Castro, V
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Ana I. Gomes
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Morais, DFS
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Braga, RVPSS
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Saraiva, I
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Souza Chaves, BM
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Park, M
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Fernandez Fernandez, V
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Rodil, R
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Montes, R
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Quintana, JB
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Vitor Vilar
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Journal
Vol. 817
ISSN: 0048-9697
Publisher: Elsevier
Indexing
Publicação em ISI Web of Knowledge ISI Web of Knowledge - 0 Citations
Publicação em Scopus Scopus - 0 Citations
Other information
Authenticus ID: P-00W-04W
Abstract (EN): This work provides a screening of organic contaminants and characterization of the dissolved organic matter in the sewer network until the municipal wastewater treatment plant (WWTP), identifying the network areas with a higher degree of contamination and their impact on the WWTP performance, particularly in the activated sludge reactor. Three monitoring campaigns were carried out at six selected locations of the sewage system (PVZ-1, PVZ-2, PS-F, PS-VC, CP-VC, and PS-T), influent (WWTPINF) and effluent (WWTPEFF) of the WWTP. Advanced analytical techniques were employed, namely excitation/emission matrix fluorescence-parallel factor analysis (EEM-PARAFAC), size exclu-sion chromatography with organic carbon detector (SEC-OCD), and liquid chromatography with high-resolution-mass spectrometric detection (LC-HRMS). EEM-PARAFAC showed higher fluorescence intensity for the protein-like compo-nent (C2), particularly at CP-VC (near seafood industries) associated with the presence of surfactants (similar to 50 mg/L). SEC-OCD highlighted the WWTP efficiency in removing low molecular weight acids and neutrals. LC-HRMS tentatively identified 108 compounds of emerging concern (CEC) and similar detection patterns were obtained for all wastewater samples, except for PVZ-2 (lower detection), many of which occurred in the effluent. Eight CECs included on relevant Watch-Lists were detected in all WWTPEFF samples. Furthermore, 111 surfactants were detected, the classes more fre-quently found being alcohol ethoxylates (AEOs), nonylphenol polyethoxylates (NPEOs) and linear alkylbenzene sulphonates (LAS). The continuous presence of LAS and NPEOs allied to surfactants concentrations in the WWTPINF of 15-20 mg/L, with CP-VC location (linked with food industries) as an important contributor, explain the morphological changes in the activated sludge and high LAS content in the dewatered sludge, which may have impacted WWTP per-formance.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 12
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