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Degradation of the antiepileptic drug carbamazepine upon different UV-based advanced oxidation processes in water

机译:抗癫痫药卡马西平在水中基于紫外线的不同高级氧化过程中的降解

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This paper systematically investigated the performance of carbamazepine (CBZ) degradation oxone by UVC (253.7 nm) irradiation in the presence of different common oxidants including peroxymonosulfate (PMS), hydrogen peroxide (H2O2) and persulfate (PS). The influence of oxidant dosage, initial CBZ concentrations, solution pH and coexisting inorganic anions was also evaluated. Results revealed that all the CBZ degradation followed the pseudo-first-order kinetics well. The degradation efficiency of the three UV-based processes was in the order of UV/PS > UV/H2O2 > UV/PMS. The rate of CBZ degradation increased as the oxidant dosage increased and decreased as the initial CBZ concentrations increased. The maximum CBZ degradation occurred at pH 11, 3, 5 in UV/PMS, UV/H2O2 and UV/PS system, respectively. Both Cl~-and CO3~(2-) can inhibit the CBZ degradation in UV/H2O2 and UV/PS system. However, adding Cl~- and CO3~(2-) into UV/PMS system can increase CBZ degradation at different degrees. Comprehensively consideration of energy requirements, oxidant costs and affecting factors, UV/PS system was the most efficient and economic process for CBZ degradation and a promising technology for water treatment.
机译:本文系统地研究了在不同的常见氧化剂(包括过氧一硫酸盐(PMS),过氧化氢(H2O2)和过硫酸盐(PS))存在下,UVC(253.7 nm)照射下卡马西平(CBZ)降解丙酮的性能。还评估了氧化剂用量,初始CBZ浓度,溶液pH值和共存的无机阴离子的影响。结果表明,所有CBZ降解均遵循拟一级动力学。三种基于紫外线的工艺的降解效率依次为:UV / PS> UV / H2O2> UV / PMS。 CBZ降解速率随氧化剂剂量的增加而增加,随初始CBZ浓度的增加而降低。 CBZ的最大降解分别发生在UV / PMS,UV / H2O2和UV / PS系统中的pH 11、3、5处。 Cl〜-和CO3〜(2-)均可抑制UV / H2O2和UV / PS体系中CBZ的降解。然而,将Cl〜-和CO3〜(2-)加入UV / PMS体系可以在不同程度上增加CBZ的降解。全面考虑能源需求,氧化剂成本和影响因素,UV / PS系统是CBZ降解最有效,最经济的方法,也是一种很有前途的水处理技术。

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