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Photosensitized degradation of bisphenol A involving reactive oxygen species in the presence of humic substances

机译:在腐殖质存在下双酚A的光敏降解涉及活性氧

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The photodegradation of endocrine disrupter bisphenol A (BPA) in the presence of natural humic substances (HS) under simulated solar irradiation was studied. BPA underwent slow direct photolysis in neutral pure water, but rapid photosensitized degradation in four kinds of HS, following pseudo-first-order reaction. Reactive oxygen species (ROS) formed from HS were determined, including OH, ~1O_2 and H_2O_2. The enhancement of BPA degradation by adding Fe(Ⅲ) was primarily attributed to the oxidation of OH produced from photo-Fenton-like reaction. And the joint effects of HS and nitrate ions coexisting on BPA degradation appeared to depend on respective concentration levels. The effects of dissolved oxygen suggested that the energy transfer between excited state of SRFA and NOFA likely occurred, while the abstraction of phenolic hydrogen atom to reactive triplet state of NOHA possibly took place. Based on the structural analyses of main intermediates and degradation products of BPA detected by GC-MS, the possible photodegradation pathways were proposed, involving the alky cleavage, alkyl oxidation and OH addition. This study gave a better understanding for the photochemical transformation of BPA induced by ROS generated from natural water composition under sunlight irradiation.
机译:研究了自然腐殖质(HS)存在下模拟太阳辐射下内分泌干扰物双酚A(BPA)的光降解。在伪一级反应后,BPA在中性纯水中进行缓慢的直接光解,但在四种HS中迅速发生光敏降解。确定了由HS形成的活性氧(ROS),包括OH,〜1O_2和H_2O_2。加入Fe(Ⅲ)促进BPA降解的增强主要归因于光芬顿样反应产生的OH的氧化。 HS和硝酸根离子共存对BPA降解的联合作用似乎取决于各自的浓度水平。溶解氧的影响表明,SRFA和NOFA的激发态之间可能发生了能量转移,而酚氢原子向NOHA的反应性三重态的提取可能发生了。基于GC-MS检测到的BPA主要中间体和降解产物的结构分析,提出了可能的光降解途径,包括烷基裂解,烷基氧化和OH的添加。这项研究为阳光照射下天然水成分产生的ROS引起的BPA的光化学转化提供了更好的理解。

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