Cargando…

Aquatic photodegradation of clofibric acid under simulated sunlight irradiation: kinetics and mechanism analysis

Clofibric acid is one of the most frequently detected pharmaceuticals in various aquatic environments. Photodegradation of clofibric acid in water under simulated sunlight was investigated. The effects of different initial concentrations, pH conditions and dissolved oxygen were examined. Photodegrad...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Xiangdan, Liu, Zongchao, Kong, Qingqing, Liu, Guoguang, Lv, Wenying, Li, Fuhua, Lin, Xiaoxuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083450/
https://www.ncbi.nlm.nih.gov/pubmed/35542726
http://dx.doi.org/10.1039/c8ra03140a
_version_ 1784703423144263680
author Zhang, Xiangdan
Liu, Zongchao
Kong, Qingqing
Liu, Guoguang
Lv, Wenying
Li, Fuhua
Lin, Xiaoxuan
author_facet Zhang, Xiangdan
Liu, Zongchao
Kong, Qingqing
Liu, Guoguang
Lv, Wenying
Li, Fuhua
Lin, Xiaoxuan
author_sort Zhang, Xiangdan
collection PubMed
description Clofibric acid is one of the most frequently detected pharmaceuticals in various aquatic environments. Photodegradation of clofibric acid in water under simulated sunlight was investigated. The effects of different initial concentrations, pH conditions and dissolved oxygen were examined. Photodegradation of clofibric acid followed a pseudo-first-order kinetics model, and the rate decreased gradually with the increasing initial concentration of clofibric acid. Dissolved oxygen inhibited the photodegradation of clofibric acid. As a result of varying reaction species of clofibric acid, the initial pH conditions greatly influenced its photodegradation. Quenching experiments showed that the self-sensitization process via ·OH and (1)O(2) occured during photodegradation of clofibric acid, and the bimolecular reaction rate constants of clofibric acid with ·OH and (1)O(2) were determined via the competition kinetics method to be 3.93(±0.20) × 10(8) and 2.38(±0.12) × 10(6) L mol(−1) s(−1), respectively. In addition, the transformation products of clofibric acid were identified by the UPLC-Q-TOF-MS microsystem, and eight products were detected. It is proposed that the photodegradation of clofibric acid occurred mainly via decarboxylation, dechlorination, ·OH addition and (1)O(2) attack reaction.
format Online
Article
Text
id pubmed-9083450
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90834502022-05-09 Aquatic photodegradation of clofibric acid under simulated sunlight irradiation: kinetics and mechanism analysis Zhang, Xiangdan Liu, Zongchao Kong, Qingqing Liu, Guoguang Lv, Wenying Li, Fuhua Lin, Xiaoxuan RSC Adv Chemistry Clofibric acid is one of the most frequently detected pharmaceuticals in various aquatic environments. Photodegradation of clofibric acid in water under simulated sunlight was investigated. The effects of different initial concentrations, pH conditions and dissolved oxygen were examined. Photodegradation of clofibric acid followed a pseudo-first-order kinetics model, and the rate decreased gradually with the increasing initial concentration of clofibric acid. Dissolved oxygen inhibited the photodegradation of clofibric acid. As a result of varying reaction species of clofibric acid, the initial pH conditions greatly influenced its photodegradation. Quenching experiments showed that the self-sensitization process via ·OH and (1)O(2) occured during photodegradation of clofibric acid, and the bimolecular reaction rate constants of clofibric acid with ·OH and (1)O(2) were determined via the competition kinetics method to be 3.93(±0.20) × 10(8) and 2.38(±0.12) × 10(6) L mol(−1) s(−1), respectively. In addition, the transformation products of clofibric acid were identified by the UPLC-Q-TOF-MS microsystem, and eight products were detected. It is proposed that the photodegradation of clofibric acid occurred mainly via decarboxylation, dechlorination, ·OH addition and (1)O(2) attack reaction. The Royal Society of Chemistry 2018-08-03 /pmc/articles/PMC9083450/ /pubmed/35542726 http://dx.doi.org/10.1039/c8ra03140a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhang, Xiangdan
Liu, Zongchao
Kong, Qingqing
Liu, Guoguang
Lv, Wenying
Li, Fuhua
Lin, Xiaoxuan
Aquatic photodegradation of clofibric acid under simulated sunlight irradiation: kinetics and mechanism analysis
title Aquatic photodegradation of clofibric acid under simulated sunlight irradiation: kinetics and mechanism analysis
title_full Aquatic photodegradation of clofibric acid under simulated sunlight irradiation: kinetics and mechanism analysis
title_fullStr Aquatic photodegradation of clofibric acid under simulated sunlight irradiation: kinetics and mechanism analysis
title_full_unstemmed Aquatic photodegradation of clofibric acid under simulated sunlight irradiation: kinetics and mechanism analysis
title_short Aquatic photodegradation of clofibric acid under simulated sunlight irradiation: kinetics and mechanism analysis
title_sort aquatic photodegradation of clofibric acid under simulated sunlight irradiation: kinetics and mechanism analysis
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083450/
https://www.ncbi.nlm.nih.gov/pubmed/35542726
http://dx.doi.org/10.1039/c8ra03140a
work_keys_str_mv AT zhangxiangdan aquaticphotodegradationofclofibricacidundersimulatedsunlightirradiationkineticsandmechanismanalysis
AT liuzongchao aquaticphotodegradationofclofibricacidundersimulatedsunlightirradiationkineticsandmechanismanalysis
AT kongqingqing aquaticphotodegradationofclofibricacidundersimulatedsunlightirradiationkineticsandmechanismanalysis
AT liuguoguang aquaticphotodegradationofclofibricacidundersimulatedsunlightirradiationkineticsandmechanismanalysis
AT lvwenying aquaticphotodegradationofclofibricacidundersimulatedsunlightirradiationkineticsandmechanismanalysis
AT lifuhua aquaticphotodegradationofclofibricacidundersimulatedsunlightirradiationkineticsandmechanismanalysis
AT linxiaoxuan aquaticphotodegradationofclofibricacidundersimulatedsunlightirradiationkineticsandmechanismanalysis