Occurrence, fate, and risk assessment of typical tetracycline antibiotics in the aquatic environment: A review

Tetracyclines (TCs), used as human and veterinary medicines, are the most widely used antibiotics. More than 75% of TCs are excreted in an active form and released into the environment through human and animal urine and feces, causing adverse effects on the ecological system and human health. Few ar...

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Veröffentlicht in:The Science of the total environment 2021-01, Vol.753, p.141975-141975, Article 141975
Hauptverfasser: Xu, Longyao, Zhang, He, Xiong, Ping, Zhu, Qingqing, Liao, Chunyang, Jiang, Guibin
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Sprache:eng
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Zusammenfassung:Tetracyclines (TCs), used as human and veterinary medicines, are the most widely used antibiotics. More than 75% of TCs are excreted in an active form and released into the environment through human and animal urine and feces, causing adverse effects on the ecological system and human health. Few articles review the environmental occurrence and behaviors of TCs, as well as their risks and toxicities. Here, we comprehensively summarized the recent advances on the following important issues: (1) Environmental occurrence of TCs. TCs are used globally and their occurrence in the aquatic environment has been documented, including surface water, groundwater, drinking water, wastewater, sediment, and sludge. (2) Environmental behaviors of TCs, particularly the fate of TCs in wastewater treatment plants (WWTPs). Most WWTPs cannot effectively remove TCs from wastewater, so alternative methods for efficient removal of TCs need to be developed. The latest degradation methods of TCs are summarized, including adsorption, photocatalytic, photochemical and electrochemical, and biological degradations. (3) Toxicities and possible risks of TCs. The toxicological data of TCs indicate that several TCs are more toxic to algae than fish and daphnia. Risk assessments based on individual compound exposure indicate that the risks arising from the current concentrations of TCs in the aquatic environment cannot be ignored. [Display omitted] •Occurrence, fate, toxicity and risk of typical TCs in the aquatic environment were summarized.•Huge amount of TCs are used and > 75% released in active form to the aquatic environment.•TCs can be degraded and mineralized by alternative advanced oxidation processes in WWTPs.•TCs are more toxic to algae than daphnia and fish, generally in the order TC > CTC > OTC.•Currently TCs exhibit non-negligible risks to aquatic ecosystem and organisms.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2020.141975