Zhang Xiangdan, Liu Zongchao, Kong Qingqing, Liu Guoguang, Lv Wenying, Li Fuhua, Lin Xiaoxuan
School of Environmental Science and Engineering, Guangdong University of Technology, Guangzhou Higher Education Mega Center No. 100 Waihuan Xi Road, Panyu District Guangzhou 510006 China
School of Environmental Science and Engineering, Sun Yat-Sen University Guangzhou 510275 China.
RSC Adv. 2018 Aug 3;8(49):27796-27804. doi: 10.1039/c8ra03140a. eCollection 2018 Aug 2.
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 ·OH and O occured during photodegradation of clofibric acid, and the bimolecular reaction rate constants of clofibric acid with ·OH and O were determined the competition kinetics method to be 3.93(±0.20) × 10 and 2.38(±0.12) × 10 L mol s, 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 decarboxylation, dechlorination, ·OH addition and O attack reaction.
氯贝酸是在各种水生环境中最常检测到的药物之一。研究了氯贝酸在模拟阳光下水中的光降解情况。考察了不同初始浓度、pH条件和溶解氧的影响。氯贝酸的光降解遵循准一级动力学模型,且速率随氯贝酸初始浓度的增加而逐渐降低。溶解氧抑制氯贝酸的光降解。由于氯贝酸反应物种的不同,初始pH条件对其光降解有很大影响。猝灭实验表明,氯贝酸光降解过程中发生了·OH和O的自敏化过程,采用竞争动力学方法测定氯贝酸与·OH和O的双分子反应速率常数分别为3.93(±0.20)×10和2.38(±0.12)×10 L·mol⁻¹·s⁻¹。此外,利用超高效液相色谱-四极杆飞行时间质谱联用系统鉴定了氯贝酸的转化产物,检测到8种产物。提出氯贝酸的光降解主要通过脱羧、脱氯、·OH加成和O攻击反应发生。