三氯生
固相萃取
萃取(化学)
色谱法
环境分析
毛细管电泳
气相色谱法
化学
固相微萃取
残留物(化学)
环境化学
环境科学
气相色谱-质谱法
质谱法
病理
医学
生物化学
作者
Chen Sun,Ting Zhang,Yu Zhou,Zhifei Liu,Yuan Zhang,B. X. Yu,Xue-song Feng
标识
DOI:10.1016/j.scitotenv.2023.161885
摘要
Triclosan (TCS) has been widely used in daily life because of its broad-spectrum antibacterial activities. The residue of TCS and related compounds in the environment is one of the critical environmental safety problems, and the pandemic of COVID-19 aggravates the accumulation of TCS and related compounds in the environment. Therefore, detecting TCS and related compound residues in the environment is of great significance to human health and environmental safety. The distribution of TCS and related compounds are slightly different worldwide, and the removal methods also have advantages and disadvantages. This paper summarized the research progress on the source, distribution, degradation, analytical extraction, detection, and removal techniques of TCS and related compounds in different environmental samples. The commonly used analytical extraction methods for TCS and related compounds include solid-phase extraction, liquid-liquid extraction, solid-phase microextraction, liquid-phase microextraction, and so on. The determination methods include liquid chromatography coupled with different detectors, gas chromatography and related methods, sensors, electrochemical method, capillary electrophoresis. The removal techniques in various environmental samples mainly include biodegradation, advanced oxidation, and adsorption methods. Besides, both the pros and cons of different techniques have been compared and summarized, and the development and prospect of each technique have been given.
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