| Literature DB >> 25460958 |
Yingling Wang1, Haijin Liu2, Guoguang Liu3, Youhai Xie2, Shuyan Gao2.
Abstract
The reaction kinetics and toxicity of diclofenac (DCF) oxidation by ferrate (VI) under simulated water disinfection conditions were investigated. Experimental results indicated that the reaction between DCF and Fe(VI) followed first-order kinetics with respect to each reactant. Furthermore, the effects of pH and temperature on DCF oxidation by Fe(VI) were elucidated using a systematic examination. The apparent second-order rate constants (kapp) increased significantly from 2.54 to 11.6M(-1)s(-1), as the pH of the solution decreased from 11.0 to 7.0, and the acid-base equilibriums of Fe(VI) and DCF were proposed to explain the pH dependence of kapp. The acute toxicity of DCF solution during Fe(VI) oxidation was evaluated using a Microtox bioassay. Overall, the DCF degradation process resulted in a rapid increase of the inhibition rate of luminescent bacteria. These toxicity tests suggest that the formation of enhanced toxic intermediates during the Fe(VI) disinfection process may pose potential health risk to consumers.Entities:
Keywords: Diclofenac; Ferrate (VI); Reaction kinetics; Toxicity; Water treatment
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Year: 2014 PMID: 25460958 DOI: 10.1016/j.scitotenv.2014.10.114
Source DB: PubMed Journal: Sci Total Environ ISSN: 0048-9697 Impact factor: 7.963