谢晴
Senior Engineer
Gender:Female
Alma Mater:大连理工大学
Degree:Doctoral Degree
School/Department:环境学院
Discipline:Environmental Engineering
Business Address:环境楼A315
E-Mail:qingxie@dlut.edu.cn
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Indexed by:期刊论文
Date of Publication:2015-07-01
Journal:ENVIRONMENTAL SCIENCE-PROCESSES & IMPACTS
Included Journals:SCIE、PubMed、Scopus
Volume:17
Issue:7
Page Number:1220-1227
ISSN No.:2050-7887
Abstract:Many water bodies, especially those adjacent to aquaculture and livestock breeding areas, are contaminated by both antibiotics and transition metals. However, the effects of the interaction between antibiotics and transition metals on the environmental behavior and the ecotoxicology of antibiotics are largely unknown. We hypothesized that antibiotics may coordinately bind with metal ions, and this complexation may affect the environmental photochemical behavior of antibiotics. We took ciprofloxacin (CIP) and Cu(II) as a case, and employed simulated sunlight experiments and density functional theory calculations to investigate the underlying reaction mechanisms. The results showed that monovalent cationic ciprofloxacin (H2CIP+) that is predominant in the normal pH range (6-9) of surface waters can chelate with hydrated Cu(II) to form [Cu(H2CIP)(H2O)(4)](3+). Compared with H2CIP+, [Cu(H2CIP)(H2O)(4)](3+) has different molecular orbitals, and atomic charge distribution. As a result, [Cu(H2CIP)(H2O)(4)](3+) showed dissimilar light absorption properties, slower direct photolytic rates, lower O-1(2) generation ability and weaker reactivity towards O-1(2). Due to the Cu(II) complexation, the apparent photodegradation of H2CIP+ was inhibited, and the photolytic pathways and product distribution were altered. This study implies that for an accurate ecological risk assessment of antibiotics under transition metal co-contamination conditions, the effects of metal complexation should be considered.