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Tytuł pozycji:

Degradation of antibiotic Cephalosporin C in different water matrices by ionizing radiation: Degradation kinetics, pathways, and toxicity.

Tytuł:
Degradation of antibiotic Cephalosporin C in different water matrices by ionizing radiation: Degradation kinetics, pathways, and toxicity.
Autorzy:
Chen X; Laboratory of Environmental Technology, INET, Tsinghua University, Beijing 100084, PR China.
Wang J; Laboratory of Environmental Technology, INET, Tsinghua University, Beijing 100084, PR China; Beijing Key Laboratory of Radioactive Waste Treatment, Tsinghua University, Beijing 100084, PR China. Electronic address: .
Źródło:
The Science of the total environment [Sci Total Environ] 2021 Oct 15; Vol. 791, pp. 148253. Date of Electronic Publication: 2021 Jun 04.
Typ publikacji:
Journal Article
Język:
English
Imprint Name(s):
Original Publication: Amsterdam, Elsevier.
MeSH Terms:
Water Pollutants, Chemical*/analysis
Water Pollutants, Chemical*/toxicity
Water Purification*
Anti-Bacterial Agents/toxicity ; Cephalosporins/toxicity ; Kinetics ; Oxidation-Reduction ; Radiation, Ionizing ; Wastewater ; Water
Contributed Indexing:
Keywords: Antibiotics; Cephalosporin C; Degradation; Ionizing radiation; Toxicity
Substance Nomenclature:
0 (Anti-Bacterial Agents)
0 (Cephalosporins)
0 (Waste Water)
0 (Water Pollutants, Chemical)
059QF0KO0R (Water)
3XIY7HJT5L (cephalosporin C)
Entry Date(s):
Date Created: 20210612 Date Completed: 20210818 Latest Revision: 20221207
Update Code:
20240104
DOI:
10.1016/j.scitotenv.2021.148253
PMID:
34118661
Czasopismo naukowe
Cephalosporin antibiotics are ubiquitous emerging pollutants in various aquatic environments due to their extensive production and application. Herein, the radiolytic degradation of antibiotic Cephalosporin C (CEP-C) in different water matrices was comprehensively investigated using gamma radiation at various experimental conditions. The results revealed that CEP-C oxidation obeyed pseudo first-order kinetics, and 100%, 94.9%, 67.0%, 44.6% and 34.5% removal of CEP-C with 10-200 mg/L was achieved at 0.4 kGy, respectively. The degradation was faster at higher absorbed dose and acidic conditions (pH = 3.5). The inorganic anions, including SO 4 2- , NO 3 - , and HCO 3 - , had negative influence on the degradation of CEP-C, the corresponding rate constant decreased from 4.603 to 3.667, 1.677 and 2.509 kGy -1 respectively in the presence of SO 4 2- , NO 3 - , and HCO 3 - . The analysis of intermediate products indicated that CEP-C was oxidized to generate about 10 intermediate products. Besides, it was inferred that the thioether sulfur oxidation, β-lactam ring opening, acetyl dissociation from dihydrothiazine ring and D-α-aminohexylamide group abscission were the major reaction mechanisms of CEP-C degradation by gamma radiation. Importantly, the antibacterial activity of CEP-C could be completely vanished by gamma radiation alone, while more toxic intermediate products might be formed. Addition of hydrogen peroxide and peroxymonosulfate could significantly improve the CEP-C degradation, and reduce the toxicity of intermediates of CEP-C degradation. Similar degradation behavior was observed in the groundwater and wastewater, implying that ionizing radiation can be used for degradation of Cephalosporin in water and wastewater.
Competing Interests: Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
(Copyright © 2021 Elsevier B.V. All rights reserved.)

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