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Visible-light-promoted degradation of the antioxidants propyl gallate and t-butylhydroquinone: Mechanistic aspects

机译:可见光促进抗氧化剂没食子酸丙酯和叔丁基氢醌的降解:机理

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摘要

The kinetic and mechanistic aspects of the visible-light-mediated photodegradation of the phenolic antioxidants (PA), propyl gallate (PG), and butylhydroquinone (TBHQ), employing riboflavin (Rf) as photosensitizer, have been studied by time-resolved and stationary techniques. The photosensitizer Rose Bengal (RB) was used for auxiliary experiments. Results show the occurrence of chemical transformations on PA with the participation of electronically excited states of Rf and different reactive oxygen species (ROS) generated from these states. With 0.02 mM Rf and 1.0 mM PA, the electronically excited triplet state of Rf is quenched by PA, in a competitive manner with the dissolved oxygen. As a consequence, a cascade of photoprocesses produces singlet oxygen (O ( Δ )) and H O in the case of PG and, O ( Δ ), H O and HO in the case of TBHQ. The participation of these species is supported by experiments of oxygen consumption carried out in the presence of specific ROS scavengers. TBHQ has a relatively high capacity for O ( Δ ) physical deactivation and a low photodegradation efficiency by the oxidative species. Comparatively, it can be asserted that TBHQ has a higher antioxidant capacity than PG.
机译:通过时间分辨和静态研究了酚核抗氧化剂(PA),没食子酸丙酯(PG)和丁基氢醌(TBHQ)的可见光介导的光降解的动力学和机理,其中核黄素(Rf)作为光敏剂。技术。光敏剂玫瑰红(RB)用于辅助实验。结果显示,在Rf的电子激发态和由这些态产生的不同活性氧(ROS)参与下,PA发生了化学转化。在0.02 mM Rf和1.0 mM PA的情况下,Rf的电子激发三重态被PA淬灭,与溶解氧竞争。结果,级联的光处理在PG的情况下产生单线态氧(O(Δ))和H O,在TBHQ的情况下产生O(Δ),HO和HO。在特定的ROS清除剂的存在下进行的耗氧实验支持了这些物种的参与。 TBHQ具有较高的O(Δ)物理失活能力,而氧化物质的光降解效率低。可以断言,TBHQ的抗氧化能力比PG高。

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