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Removal of sulfamethoxazole and erythromycin from aqueous solution by O_3/H_2O_2

机译:通过O_3 / H_2O_2从水溶液中除去磺胺甲恶唑和红霉素

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The performance of sulfonamide and macrolide antibiotics in a spiked water removed by O_3 and O_3/H_2O_2 was evaluated uder different conditions such as ozone dosage, pH and H_2O_2/O_3 mole ratio. The results showed that O_3 and O_3/H_2O_2 were proved to be effective to oxdize sulfamethoxazole of sulfonamides containing the aromatic ring and erythromycin of macrolides, which were built of mostly saturated hydrocarbon structure, and O_3 was preferentially to oxidize sulfamethoxazole. With the reaction time of 30 min, when the ozone cocentrations were 2mg/L and 3mg/L, sulfamethoxazole and erythromycin removal efficiency was 93% and 91%, respectively. The sulfamethoxazole and erythromycin were removed completely within 30 min with ozone 6 mg/L. Degradation of sulfamethoxazole containing unsaturated C-C bonds occured easier at low pH only by O_3. Degradation of erythromycin with fully saturated structure was difficult, but the improved removal efficiency could be obtained at higher pH. The high concentratins of H_2O_2 to ozonation was favor to remove those antibiotics. At the 0.5 mole ratio of H_2O_2/O_3, the highest removal efficiency could be reached for all the antibiotics.
机译:磺酰胺和在由O_3和O_3除去尖刺水大环内酯类抗生素的性能/ H_2O_2被乌德不同条件,如臭氧剂量,pH和H_2O_2 / O_3摩尔比进行评价。结果表明,O_3和O_3 / H_2O_2被证明是有效的oxdize含有大环内酯类,其被建立基本上饱和烃结构的芳族环和红霉素磺胺磺胺甲基异恶唑,和O_3是优先氧化磺胺甲恶唑。以30分钟的反应时间,当臭氧cocentrations分别为2mg / L时和为3mg / L,磺胺甲恶唑和红霉素去除率分别为93%和91%。所述磺胺甲恶唑和红霉素用臭氧6毫克/升在30分钟内完全除去。含不饱和C-C键的新诺明降解仅由O_3发生在低pH更容易。与完全饱和结构红霉素降解是困难的,但改进去除率在较高pH而获得。双氧水的高concentratins臭氧化是有利于消除这些抗生素。在H_2O_2 / O_3的0.5摩尔比,最高的去除效率可以达到的所有抗生素。

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