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Comparison of the degradation of molecular and ionic ibuprofen in a UV/H2O2 system

机译:UV / H2O2系统中分子和离子布洛芬降解的比较

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The advanced oxidation technologies based on (OH)-O-center dot can effectively degrade the pharmaceutical and personal care products under operating conditions of normal temperature and pressure. In this study, direct photolysis of ibuprofen (IBU) is slow due to the relatively low molar extinction coefficient and quantum yield. Compared to direct photolysis, the degradation kinetics of IBU was significantly enhanced in the UV/H2O2 system, mainly by (OH)-O-center dot radical mediated oxidation. In the UV/H2O2 system, the degradation rate of ionic IBU was slightly faster than that of the molecular form. Kinetic analysis showed that the second-order reaction rate constant of ionic IBU (5.51 x 10(9) M-1 s(-1)) washigher than that of the molecular form (3.43 x 10(9) M-1 s(-1)). The pseudo first-order rate constant for IBU degradation (k(obs)) increased with increasing H2O2 dosage. k(obs) can be significantly decreased in the presence of natural organic matter (NOM), which is due to (i) NOM radical scavenging effects (dominant role) and (ii) UV absorption. The degradation of IBU was inhibited by HCO3-, which was attributed to its scavenging effect. Interestingly, when NO3- was present in aqueous solution, a slight increase in the degradation rate was observed, which was due to NO3- absorbing photons to generate (OH)-O-center dot at a low quantum yield. No obvious effects were observed when SO42 and Cl- were present.
机译:基于(OH)-o中心点的先进氧化技术可以在正常温度和压力的操作条件下有效地降解药物和个人护理产品。在该研究中,由于相对低的摩尔消光系数和量子产率,直接光解(IBU)对布洛芬(IBU)进行慢。与直接光解相比,UV / H 2 O 2系统中IBU的降解动力学显着增强,主要由(OH)-O中心点介导的氧化氧化。在UV / H 2 O 2系统中,离子IBU的降解速率略微比分子形式的降解速率略微快。动力学分析表明,离子IBU的二阶反应速率常数(5.51×10(9)m-1s(-1))浅(3.43×10(9)m-1 s( - 1))。随着H2O2剂量的增加,IBU降解的伪一阶速率常数增加了(K(OB)。 K(OBS)在天然有机物(NOM)存在下可以显着降低,这是由于(i)NOM自由基清除作用(显性作用)和(ii)紫外线吸收。 HCO3-抑制了IBU的降解,其归因于其清除效应。有趣的是,当NO3-存在于水溶液中时,观察到降解速率的轻微增加,这是由于NO3-吸收光子以低量子产率产生(OH)-O-中心点。当SO42和CL-存在时,没有观察到明显的效果。

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