University of Maryland Baltimore County, Department of Chemical, Biochemical and Environmental Engineering, 1000 Hilltop Circle, ECS 314, Baltimore, MD 21250, USA.
University of Maryland Baltimore County, Department of Chemical, Biochemical and Environmental Engineering, 1000 Hilltop Circle, ECS 314, Baltimore, MD 21250, USA.
J Hazard Mater. 2017 Sep 15;338:23-32. doi: 10.1016/j.jhazmat.2017.05.016. Epub 2017 May 10.
UV-filters (UVFs) are active ingredients in personal care products that protect skin from exposure to UV light. Environmentally-relevant concentrations of UVFs have recently been linked to toxicity in aquatic organisms, necessitating research into improved UVF removal in water/wastewater treatment. Here, we investigated ozonation of the three most commonly employed UVFs: octinoxate (OMC), octocrylene (OC), and oxybenzone (OXY). Specific second-order rate constants for UVF reaction with ozone were identified as follows: OMC, 5.25×10Ms; OC, 1.58Ms; OXY (neutral), 3.80×10Ms; and, OXY (anion), 1.51×10Ms. These kinetic parameters indicated that OMC and OXY undergo significant (2-log or greater) transformation for typical ozone exposures in disinfection processes; however, minimal oxidation is expected for OC. UV absorbance mapping was employed to characterize the loss of UVF activity (i.e., absorbance across the UV-A, UV-B, and UV-C ranges) during ozonation. These 4-dimensional maps also confirmed ozone attack mechanisms, namely reaction at phenolate (OXY) and olefin (OMC, OC) groups. Primary transformation products from these reactions were identified for all three UVFs of concern. For OC and OXY, the benzophenone structure is conserved, suggesting that transformation products retain toxicity concerns.
紫外线滤光剂(UVFs)是个人护理产品中的活性成分,可保护皮肤免受紫外线照射。最近,环境相关浓度的 UVFs 已与水生生物的毒性有关,因此需要研究改进水中/废水中的 UVF 去除。在这里,我们研究了三种最常用的 UVFs(甲氧基肉桂酸辛酯(OMC)、奥克立林(OC)和氧苯酮(OXY))的臭氧化作用。确定了 UVF 与臭氧反应的特定二级速率常数如下:OMC,5.25×10Ms;OC,1.58Ms;OXY(中性),3.80×10Ms;和,OXY(阴离子),1.51×10Ms。这些动力学参数表明,对于消毒过程中典型的臭氧暴露,OMC 和 OXY 会发生显着(2 个对数或更高)转化;然而,OC 预计氧化作用很小。紫外线吸收映射用于表征臭氧氧化过程中 UVF 活性的损失(即,在 UV-A、UV-B 和 UV-C 范围内的吸收)。这些 4 维图谱还证实了臭氧攻击机制,即酚盐(OXY)和烯烃(OMC、OC)基团的反应。鉴定了所有三种关注的 UVF 的这些反应的主要转化产物。对于 OC 和 OXY,保留了二苯甲酮结构,这表明转化产物仍存在毒性问题。