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Online electro-Fenton-mass spectrometry reveals 2,4',5-trichlorobiphenyl oxidation products and binding to organic matter

机译:在线芬顿质谱仪揭示了2,4',5-三氯联苯的氧化产物并与有机物结合

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Electrochemistry-mass spectrometry is used to simulate redox reactions in many research disciplines because this technique is fast and provides information on compound metabolites. However, the analysis of the degradation of refractory organic pollutants by reactive oxygen species is difficult to achieve by the electrochemistry step. Therefore, here we use online electro-Fenton-mass spectrometry to study for the first time the oxidation of 2,4',5-trichlorobiphenyl [polychlorinated biphenyl (PCB) 31] by reactive oxygen species and the binding reactions of PCB degradation products with model substances of natural organic matter. The degradation products were identified by coupled Q Trap mass spectrometry. We observed a binding of a degradation product with γ-L-glutamyl-L-cysteinyl-glycine. We propose a transformation pathway. We conclude that online electro-Fenton-mass spectrometry is a promising technique to study the oxidation of refractory organic pollutants and further binding of degradation products with natural organic matter.
机译:电化学质谱法在许多研究领域用于模拟氧化还原反应,因为该技术快速且可提供有关化合物代谢物的信息。但是,难以通过电化学步骤来分析活性氧对难降解有机污染物的降解。因此,这里我们使用在线电子芬顿质谱法研究了活性氧对2,4',5-三氯联苯[多氯联苯(PCB)31]的氧化以及PCB降解产物与天然有机物质的模型物质。通过偶联Q阱质谱法鉴定降解产物。我们观察到降解产物与γ-L-谷氨酰基-L-半胱氨酰-甘氨酸的结合。我们提出了一条转型途径。我们得出的结论是,在线电子芬顿质谱技术是研究难降解有机污染物的氧化以及降解产物与天然有机物进一步结合的有前途的技术。

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