Photocatalytic degradation of ciprofloxacin using CuFe2O4@methyl cellulose based magnetic nanobiocomposite
Author:
Funder
Kerman University of Medical Sciences
Yazd University
Publisher
Elsevier BV
Subject
Medical Laboratory Technology,Clinical Biochemistry
Reference26 articles.
1. Are pharmaceuticals more harmful than other pollutants to aquatic invertebrate species: a hypothesis tested using multi-biomarker and multi-species responses in field collected and transplanted organisms;Damasio;Chemosphere,2011
2. Chemical pollutants of pharmaceutical origin present in the environment;Corra;J. Health Pollut.,2018
3. Hot spot pollutants: pharmaceuticals in the environment;Dietrich;Toxicol. Lett.,2002
4. Removal of antibiotics from surface and distilled water in conventional water treatment processes;Adams;J. Environ. Eng.,2002
5. Preparation of CoFe2O4 /activated carbon@chitosan as a new magnetic nanobiocomposite for adsorption of ciprofloxacin in aqueous solutions;Malakootian;Water Sci. Technol.,2018
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