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首页> 外文期刊>RSC Advances >NaYF4:Yb,Tm@TiO2 core@shell structures for optimal photocatalytic degradation of ciprofloxacin in the aquatic environment
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NaYF4:Yb,Tm@TiO2 core@shell structures for optimal photocatalytic degradation of ciprofloxacin in the aquatic environment

机译:NaYF4:Yb,Tm @ TiO2核壳结构对水环境中环丙沙星的最佳光催化降解

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摘要

The removal of antibiotic residues in the aquatic environment is still a big challenge in environmental protection. Here, we developed NaYF _(4) :Yb,Tm@TiO _(2) as a highly efficient photocatalyst for photocatalytic degradation of ciprofloxacin (CIP), a representative antibiotic in water under simulated solar irradiation. NaYF _(4) :Yb,Tm@TiO _(2) can efficiently utilize a broad spectrum of solar energy to improve the efficiency of ciprofloxacin removal from an aquatic environment. The optimum operation conditions of photocatalyst dosage, pH value, and initial concentrations of CIP were determined by a series of contrast experiments. The dynamic process of CIP removal was monitored by UV-vis spectrophotometry, and can be well predicted by a pseudo first order model. The optimal conditions of photocatalyst dosage, initial concentration of CIP and pH value for CIP photocatalytic degradation were 1 g L ~(?1) , 10 ~(?5) M and 8, respectively. This study provides an efficient method for antibiotic removal and enables a promising strategy for other organic water pollutant treatments.
机译:去除水生环境中的抗生素残留仍然是环境保护的一大挑战。在这里,我们开发了NaYF _(4):Yb,Tm @ TiO _(2)作为高效光催化剂,用于模拟太阳照射下水中的代表性抗生素环丙沙星(CIP)的光催化降解。 NaYF _(4):Yb,Tm @ TiO _(2)可以有效地利用广谱的太阳能,以提高从水生环境中去除环丙沙星的效率。通过一系列对比实验确定了光催化剂用量,pH值和CIP初始浓度的最佳操作条件。 CIP去除的动态过程通过紫外可见分光光度法进行监测,并且可以通过伪一级模型很好地预测。用于CIP光催化降解的最佳光催化剂用量,CIP初始浓度和pH值的最佳条件分别为1 g L〜(?1),10〜(?5)M和8。这项研究提供了一种有效的抗生素去除方法,并为其他有机水污染物的处理提供了有前途的策略。

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