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Enhanced adsorption of norfloxacin on modified TiO2 particles prepared via surface molecular imprinting technique

机译:诺氟沙星在表面分子印迹技术制备的改性TiO2颗粒上的增强吸附

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For norfloxacin removal in aquatic environment, TiO2 particles (P25) were modified via surface molecular imprinting technique to improve the adsorption property and sustainable use by photocatalytic regeneration. Orthogonal experiment was adopted to quantify the significance of preparation factors and determine the optimum preparation conditions. The adsorption of norfloxacin on the molecular imprinted particles (MIPs), the non-imprinted particles (NIPs), and P25 fitted the second-order adsorption model and Langmuir model well. The MIPs showed a higher adsorption capacity toward norfloxacin than the NIPs and P25. The adsorption rate constant, maximum adsorption capacity, and Langmuir constant of the MIPs toward norfloxacin were 0.49gmg(-1)min(-1), 2.99mgg(-1), and 2.4Lmg(-1), respectively. Removal efficiencies for norfloxacin, ciprofloxacin, carbamazepine, and phenol by the MIPs were 76.99, 78.81, 7.87, and 2.68%, respectively, which indicated that the MIPs had higher affinity toward norfloxacin and fluoroquinolones with similar structures. Moreover, the MIPs exhibited the photocatalytic property and could be regenerated by UV irradiation with stable removal efficiency for norfloxacin in five adsorption-regeneration cycles.
机译:为了去除水环境中的诺氟沙星,通过表面分子印迹技术对TiO2颗粒(P25)进行了改性,以提高其吸附性能,并通过光催化再生来可持续使用。采用正交实验对制备因子的意义进行量化,确定最佳制备条件。诺氟沙星在分子印迹颗粒(MIPs),非印迹颗粒(NIPs)和P25上的吸附非常适合二阶吸附模型和Langmuir模型。与NIP和P25相比,MIP对诺氟沙星的吸附能力更高。 MIP对诺氟沙星的吸附速率常数,最大吸附容量和Langmuir常数分别为0.49gmg(-1)min(-1),2.99mgg(-1)和2.4Lmg(-1)。 MIP对诺氟沙星,环丙沙星,卡马西平和苯酚的去除效率分别为76.99、78.81、7.87和2.68%,这表明MIP对具有相似结构的诺氟沙星和氟喹诺酮类具有更高的亲和力。此外,MIPs具有光催化性能,可以在五个吸附-再生循环中通过紫外线辐射以稳定的去甲氟沙星去除效率进行再生。

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