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Advantages of TiO2/5A composite catalyst for photocatalytic degradation of antibiotic oxytetracycline in aqueous solution: Comparison between TiO2 and TiO2/5A composite system

机译:TiO2 / 5A复合催化剂在水溶液中光催化降解抗生素土霉素的优势:TiO2与TiO2 / 5A复合体系的比较

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摘要

To probe advantages in TiO2/5A zeolite composite system, the photocatalytic degradation and adsorption of the antibiotfc oxytetracycline (OTC) by unsupported TiO2 and 5A zeolite coated with 15 mass% TiO2 (15%T5A) under a series of conditions were investigated. The primary adsorption results indicated that 5A had much better adsorptive capability of OTC than TiO2 except at high pH values (pH ≥ 11). A multivariate analysis and a response surface methodology (RSM) were applied to develop a quadratic model as a functional relationship between OTC removal efficiency and the independent variables (the initial pH values and the dosage of the catalyst). The optimal OTC removal conditions found with 15%T5A dosage were 1.00 g/L for pH 5 and 7, 0.80 g/L for pH 9, and 0.68 g/L for pH 11. Under these conditions, the 15%T5A composite photocatalysis showed a quicker OTC removal and degradation speed than unsupported TiO2. Besides, competitive organics like tert-butyl alcohol (TBA), methanol and humid acid, were added during the photocatalytic degradation of OTC by UV + TiO2 and UV +15%T5A at pH 7. The experimental results indicated that the 15%T5A composite system had a better anti-interference capability of radical scavengers, and humid acid at a low concentration than unsupported TiO2. Moreover, the 15%T5A proved a more stable activity during recycled use and a much quicker sedimentation performance than nano-TiO2.
机译:为了探究TiO2 / 5A沸石复合体系的优势,研究了在一系列条件下,无载体TiO2和涂有15质量%TiO2(15%T5A)的5A沸石对光生物降解氧四环素(OTC)的吸附性能。初步吸附结果表明,5A在高pH值(pH≥11)下比TiO2具有更好的OTC吸附能力。应用多元分析和响应面方法(RSM)来开发二次模型,作为OTC去除效率和自变量(初始pH值和催化剂用量)之间的函数关系。在15%T5A剂量下发现的最佳OTC去除条件是pH 5为1.00 g / L,pH 7为0.80 g / L,pH 11为0.68 g / L。在这些条件下,15%T5A复合光催化显示比不受支持的TiO2更快的OTC去除和降解速度。此外,在pH 7时,UV + TiO2和UV + 15%T5A光催化降解OTC的过程中,加入了竞争性有机物,如叔丁醇(TBA),甲醇和湿酸。实验结果表明,该15%T5A复合材料与未负载的TiO2相比,该体系具有更好的自由基清除剂和低浓度湿酸的抗干扰能力。此外,与纳米TiO2相比,15%T5A被证明在回收利用期间具有更稳定的活性,并且具有更快的沉降性能。

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