Zhang Di, Wang Yi-Xuan, Niu Hong-Yun, Meng Zhao-Fu
College of Science, Northwest A & F University, Yangling 712100, China.
Huan Jing Ke Xue. 2011 Oct;32(10):2943-8.
The degradation of norfloxacin in aquatic environment was studied in the presence of Fe3O4 nanoparticles and H2O2. The effects of solution pH, temperature, dose of catalysts and concentration of H2O2 on norfloxacin degradation were surveyed. The degradation behaviors of different substrates by nano-Fe3O4/H2O2 were investigated and the reaction mechanism of norfloxacin was discussed. The results showed that the reaction was strongly pH-dependent and favored in acidic solution (pH = 3.5). The removal efficiency of norfloxacin was enhanced with the increase of temperature, catalysts dosage and H2O2 concentration. The degradation efficiency of norfloxacin by nano-Fe3O4/H2O2 was significantly higher than those of sulfathiazole, phenolic and aniline compounds. In the presence of 4.4 mmol x L(-1) of H2O2, 0.80 g x L(-1) of Fe3O4 and T = 303 K, norfloxacin was degraded completely in 5 min. The F element in norfloxacin molecule existed totally as F(-) in solution within 5 min, and the removal efficiency of total organic carbon was 57% in 1 h. In the ESR spectrum of nano-Fe3O4/H2O2 system, the characteristic peaks of BMPO-*OH adduct was detected, however, the intensity of the peaks was reduced to 5% with the addition of tert-butanol, a strong *OH scavenger, and the degradation efficiency of norfloxacin was correspondingly decreased to 10% in 1 h. These results indicated that *OH played an important role on norfloxacin degradation, and the reaction proceeded based on a heterogeneous Fenton-like system.
研究了在四氧化三铁纳米颗粒和过氧化氢存在的情况下,诺氟沙星在水环境中的降解情况。考察了溶液pH值、温度、催化剂用量和过氧化氢浓度对诺氟沙星降解的影响。研究了纳米四氧化三铁/过氧化氢对不同底物的降解行为,并探讨了诺氟沙星的反应机理。结果表明,该反应强烈依赖于pH值,在酸性溶液(pH = 3.5)中更有利。诺氟沙星的去除效率随着温度、催化剂用量和过氧化氢浓度的增加而提高。纳米四氧化三铁/过氧化氢对诺氟沙星的降解效率显著高于磺胺噻唑、酚类和苯胺类化合物。在4.4 mmol·L⁻¹过氧化氢、0.80 g·L⁻¹四氧化三铁和T = 303 K的条件下,诺氟沙星在5分钟内完全降解。诺氟沙星分子中的氟元素在5分钟内完全以F⁻的形式存在于溶液中,1小时内总有机碳的去除效率为57%。在纳米四氧化三铁/过氧化氢体系的电子自旋共振光谱中,检测到BMPO-·OH加合物的特征峰,然而,加入强·OH清除剂叔丁醇后,峰强度降低至5%,诺氟沙星的降解效率在1小时内相应降至10%。这些结果表明·OH在诺氟沙星降解中起重要作用,反应基于非均相类芬顿体系进行。