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Fe(III)-Citrate-Complex-Induced Photooxidation of 3-Methylphenol in Aqueous Solution

机译:Fe(III)-柠檬酸盐络合物诱导的3-甲基苯酚在水溶液中的光氧化

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摘要

The photodegradation process of m-cresol (3-methylphenol), induced by Fe(III)-Cit complex, was investigated upon irradiation at 365 nm in natural water. The composition and photochemical properties of Fe(III)-Cit complex were studied by UV-Visible absorption spectrophotometer for optimizing the stoichiometry of the complex and photolysis under irradiation at 365 nm, respectively. A dark investigation of the system was performed before studying the photochemical behavior. The photooxidation efficiencies of m-cresol were dependent on the pH value, optimized at pH 2.86, oxygen, initial concentrations of Fe(III)-Cit complex, and m-cresol. Additionally, to look into the mechanism of m-cresol degradation using Fe(III)-Cit, tertiobutanol alcohol was used as scavenger for hydroxyl radicals and the result suggested that hydroxyl radical attack was the main pathway of m-cresol degradation. Besides, oxygen can enhance the photolysis of Fe(III)-Citrate complex by trapping the electron on the carbon centered radical formed after the photoredox process. Then O_2~(·-) formed reacts rapidly leading finally to formation of ~·OH radical. In absence of oxygen, less reactive species are formed; consequently the disappearance of m-cresol was strongly inhibited. Our work shows that the presence of Fe(III)-Citrate complex could have a considerable impact on the fate of organic pollutant in aquatic environment.
机译:研究了Fe(III)-Cit配合物在天然水中365 nm照射后诱导间甲酚(3-甲基苯酚)的光降解过程。通过紫外可见吸收分光光度计研究了Fe(III)-Cit配合物的组成和光化学性质,分别优化了配合物的化学计量和在365 nm照射下的光解。在研究光化学行为之前,对系统进行了黑暗调查。间甲酚的光氧化效率取决于pH值,在2.86的最适pH,氧气,Fe(III)-Cit复合物的初始浓度和间甲酚。此外,为研究使用Fe(III)-Cit降解间甲酚的机理,叔丁醇被用作羟基自由基的清除剂,结果表明羟基自由基的进攻是间甲酚降解的主要途径。此外,氧可以通过将电子俘获在光氧化还原过程后形成的碳中心自由基上来增强Fe(III)-柠檬酸盐配合物的光解作用。然后形成的O_2〜(·-)迅速反应,最终形成〜·OH自由基。在没有氧气的情况下,会形成较少的反应性物质。因此,间甲酚的消失被强烈抑制。我们的工作表明,柠檬酸铁(III)配合物的存在可能会对水生环境中有机污染物的命运产生重大影响。

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