4.7 Article

DOM as an indicator of occurrence and risks of antibiotics in a city-river-reservoir system with multiple pollution sources

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 686, 期 -, 页码 276-289

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2019.05.439

关键词

Dissolved organic matter; Antibiotics; Parallel factor analysis; Sources; Environmental risk

资金

  1. National Science and Technology Major Projects of Water Pollution Control and Management of China [2017ZX07207002-05]
  2. National Research Foundation (NRF), Prime Minister's Office, Singapore under its Campus for Research Excellence and Technological Enterprise (CREATE) Program

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Multiple sources contribute to the presence of antibiotic residues in water environments, and the environmental risks caused by antibiotics were paid more and more attention. This work aims to establish a relationship between optical properties of dissolved organic matter (DOM) and sources and risks of antibiotics. Occurrence of antibiotics and DOM in a city-river-reservoir freshwater system containing distinct antibiotic sources was investigated during three seasons using LC-MS and fluorescence excitation-emission matrix coupled with parallel factor analysis (EEM-PARAFAC), respectively. The results showed that antibiotics and DOM in the water had trends of increasing levels from the upstream to the midstream in the system. Five classes of antibiotics had statistically significant correlations with the humic-like component (C3) in the water (Pearson, p < 0.05). Especially, norfloxacin (NFX), which was dominant in the aquaculture source, significantly increased the fluorescence of C3 according to the fluorescence titration (R-2 = 0.86, p < 0.01). Furthermore, fluorescence signature in the aquaculture pond posed broad humic acid-like peaks with relatively higher abundances compared to other areas. These results suggested that C3 could be recognized as an indicator of NFX from aquaculture sources. Meanwhile, C3 can largely account for ecological risks of tetracyclines according to the results of redundancy analysis. This work highlights the roles of EEM-PARAFAC on tracing the source of antibiotics and the correlations between environmental risks of antibiotics and DOM in the aquatic environment. (C) 2019 Elsevier B.V. All rights reserved.

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