Ministry of Education Key Laboratory of Pollution Control and Ecological Remediation for Industrial Agglomeration Area, School of Environment and Energy, South China University of Technology, Guangzhou, 510006, Guangdong, People's Republic of China.
State Key Lab of Pulp and Paper Engineering, School of Light Industry and Engineering, South China University of Technology, Guangzhou, 510640, People's Republic of China.
Environ Sci Pollut Res Int. 2017 Aug;24(22):18640-18650. doi: 10.1007/s11356-017-9467-6. Epub 2017 Jun 25.
A water-compatible magnetic triclosan (TCS) imprinted material (TCS-CTS-Fe-MIPs) was synthesized for selective enrichment and detection of TCS in real complex water samples. The material was synthesized by using chitosan (CTS) as functional monomer, which has rich surface O- and N-containing functional groups. The TCS imprinted CTS was coated on Fe surface and then cross-linked with glutaraldehyde. Scanning electron microscopy suggested that the imprinted material was covered with a layer of imprinted film, Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy confirmed that the imprinted material had more functional groups (amino and hydroxyl groups) than that of non-imprinted material. The TCS imprinted and non-imprinted materials used in each adsorption experiments were 0.1 mg mL. The maximum adsorption capacity of the TCS imprinted material and non-TCS imprinted material were 20.86 and 15.11 mg g, respectively. The adsorption results showed that selectivity coefficient was 10.151, 1.353, and 8.271 in the presence of p-chlorophenol, 2,4,6-trichlorophenol, and bisphenol-A, respectively. The recoveries of river water and lake water samples were 92.8, 91.3, 92.4, and 81.4, 82.3, 82.1%, respectively, when the samples were spiked with 4, 6, and 8 μg L of TCS with the imprinted material. The adsorption capacity of the TCS imprinted material and non-TCS imprinted material lost 5.2 and 6.2% after six times of recycling. The high selectivity and excellent adsorption capacity of the imprinted material can be attributed to the presence of sterically complementary imprinted sites and high surface, which would also made it more accessible to TCS than that of non-imprinted material. The present study would provide an environmental friendly and convenient method for the removal and the monitoring of TCS in environmental water samples.
一种水兼容的磁性三氯生(TCS)印迹材料(TCS-CTS-Fe-MIPs)被合成用于在实际复杂水样中选择性富集和检测 TCS。该材料通过使用壳聚糖(CTS)作为功能单体合成,CTS 具有丰富的表面含 O 和 N 的官能团。TCS 印迹的 CTS 涂覆在 Fe 表面上,然后用戊二醛交联。扫描电子显微镜表明印迹材料表面覆盖有一层印迹膜,傅里叶变换红外光谱和 X 射线光电子能谱证实印迹材料比非印迹材料具有更多的官能团(氨基和羟基)。每个吸附实验中使用的 TCS 印迹和非 TCS 印迹材料分别为 0.1mg mL。TCS 印迹材料和非 TCS 印迹材料的最大吸附容量分别为 20.86 和 15.11mg g。吸附结果表明,在存在对氯苯酚、2,4,6-三氯苯酚和双酚 A 的情况下,选择性系数分别为 10.151、1.353 和 8.271。当用印迹材料对河水和湖水样品进行加标时,回收率分别为 92.8%、91.3%、92.4%和 81.4%、82.3%、82.1%。当印迹材料六次循环使用时,TCS 印迹材料和非 TCS 印迹材料的吸附容量分别损失了 5.2%和 6.2%。印迹材料的高选择性和优异的吸附容量可归因于存在空间互补的印迹位点和高表面积,这使得 TCS 比非印迹材料更容易进入。本研究为环境水样中 TCS 的去除和监测提供了一种环保且方便的方法。