Literature DB >> 32016688

Antibiotics in wastewater from multiple sources and surface water of the Yangtze River in Chongqing in China.

Yungang Shi1,2, Jialie Liu2, Li Zhuo2, Xiao Yan1, Fengshan Cai1, Weikeng Luo1, Mingzhong Ren1, Qiang Liu3, Yunjiang Yu4.   

Abstract

Antibiotic contamination attracts growing concerns because of their deleterious effects on the ecosystem and human health. In this study, 43 antibiotics in wastewater from a variety of sources and water of the Yangtze River in Chongqing City in western China were measured. Thirty compounds were detected, and their concentrations were highest in leachates from the municipal solid waste treatment facilities (landfills and incineration plants) with total concentrations of 3584-57,106 ng/L. The total concentrations in influents of municipal and industrial wastewater treatment plants (WWTPs) were comparable (401-7994 ng/L versus 640-8945 ng/L). The concentrations in raw sewage from swine farms (with a total of 10,219-39,195 ng/L) and poultry farms (1419-36,027 ng/L) were noticeably higher than those from other farms (54.0-5516 ng/L). Fluoroquinolones were the dominant antibiotics contributing over 50% in all the sources, and sulfonamides and imidazole fungicides contributed 3.2-34%, whereas tetracyclines and macrolides had minor contributions. The overall antibiotic removal rates were highest in solid waste treatment facilities (88% on average), comparable between municipal and industrial WWTPs (61%), and lowest in animal farms (39%). The mass loads to the investigated municipal WWTPs via influent wastewater ranged from 7.80 to 1531 kg/year (53.2-2482 μg/day per capital). The influent mass loads to the industrial WWTPs and farms were 3.7-50 kg/year and 0.9-5437 g/year, respectively. We estimated that the mass inventories of antibiotics from these sources to the environment via effluent discharges were approximately 2044 kg for municipal WWTPs, 61 kg for industrial WWTPs, and 34 kg for animal farms in the whole city. Antibiotic concentrations in the Yangtze River water were substantially low (< 492 ng/L, with a mean of 57.8 ng/L) suggesting dissipation during the movement.

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Keywords:  Antibiotics; Husbandry farms; Industrial source; Landfills; Mass inventory; Wastewater treatment plants (WWTPs)

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Year:  2020        PMID: 32016688     DOI: 10.1007/s10661-020-8108-6

Source DB:  PubMed          Journal:  Environ Monit Assess        ISSN: 0167-6369            Impact factor:   2.513


  2 in total

1.  Occurrence and distribution of azithromycin in wastewater treatment plants, seawater, and sediments of the northern part of the Persian Gulf around Bushehr port: A comparison with Pre-COVID 19 pandemic.

Authors:  Farzad Mirzaie; Fatemeh Teymori; Seyedehfatemeh Shahcheragh; Sina Dobaradaran; Hosein Arfaeinia; Raheleh Kafaei; Soleyman Sahebi; Sima Farjadfard; Bahman Ramavandi
Journal:  Chemosphere       Date:  2022-08-12       Impact factor: 8.943

2.  Bibliometric analysis of global research output on antimicrobial resistance in the environment (2000-2019).

Authors:  Waleed M Sweileh; Ahmad Moh'd Mansour
Journal:  Glob Health Res Policy       Date:  2020-08-03
  2 in total

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