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Comparative study of the degradation of carbamazepine in water by advanced oxidation processes

机译:先进氧化工艺降解水中卡马西平的比较研究

摘要

Degradation of carbamazepine (CBZ) using ultraviolet (UV), UV/H2O2, Fenton, UV/Fenton and photocatalytic oxidation with TiO2 (UV/TiO2) was studied in deionized water. The five different oxidation processes were compared for the removal kinetics of CBZ. The results showed that all the processes followed pseudo-first-order kinetics. The direct photolysis (UV alone) was found to be less effective than UV/H2O2 oxidation for the degradation of CBZ. An approximate 20% increase in the CBZ removal efficiency occurred with the UV/Fenton reaction as compared with the Fenton oxidation. In the UV/TiO2 system, the kinetics of CBZ degradation in the presence of different concentrations of TiO2 followed the pseudo-first order degradation, which was consistent with the Langmuir-Hinshelwood (L-H) model. On a time basis, the degradation efficiencies of CBZ were in the following order: UV/Fenton (86.9% +/- 1.7%) > UV/TiO2 (70.4% +/- 4.2%) > Fenton (67.8% +/- 2.6%) > UV/H2O2 (40.65 +/- 5.1%) > UV (12.2% +/- 1.4%). However, the lowest cost was obtained with the Fenton process.
机译:研究了在去离子水中使用紫外线(UV),UV / H2O2,Fenton,UV / Fenton降解卡马西平(CBZ)以及用TiO2(UV / TiO2)光催化氧化的方法。比较了五种不同的氧化过程的CBZ去除动力学。结果表明,所有过程均遵循拟一级动力学。发现直接光解(仅紫外线)在降解CBZ方面不如UV / H2O2氧化有效。与Fenton氧化相比,UV / Fenton反应的CBZ去除效率提高了约20%。在UV / TiO2系统中,在不同浓度的TiO2存在下CBZ降解的动力学遵循伪一级降解,这与Langmuir-Hinshelwood(L-H)模型一致。在时间上,CBZ的降解效率按以下顺序排列:UV / Fenton(86.9%+/- 1.7%)> UV / TiO2(70.4%+/- 4.2%)> Fenton(67.8%+/- 2.6) %)> UV / H2O2(40.65 +/- 5.1%)> UV(12.2%+/- 1.4%)。但是,使用Fenton工艺可获得最低的成本。

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