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Photocatalytic degradation pathway of sulfadiazine over Ag-TiO2 under visible light irradiation

机译:可见光照射下Ag-TiO2上磺胺腈的光催化降解途径

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In the past decades, TiO2-based photocatalysis has received much research attention as an effective strategy for decomposing the antibiotics in a water system. However, the degradation pathway of antibiotics over TiO2-based photocatalysts has seldom been studied. In this work, Ag-TiO2 was prepared via photo-reduction method and the photocatalytic degradation pathway of sulfadiazine over Ag-P25 under visible light irradiation was explored with the assistance of high performance liquid chromatography-mass spectrometry (HPLC-MS). Based on the HPLC-MS results, the chemical formulas of five degradation intermediates were proposed: one is the product of desulfonating reaction; the second is the product of sulfanilamide bond-breaking reaction; the others are the oxidation and substitution products initiated by boldOH/bold. The contributions of O-2(-), OH and h(+) during the photocatalytic degrading process of sulfadiazine were investigated by reactive species trapping experiments. On the basis of the above results, it can be deduced that there exist three possible photocatalytic degrading pathways of sulfadiazine, i.e., desulfonation, sulfanilamide bond-breakage and the oxidation of amino groups. Moreover, the photocatalytic mechanism of Ag-P25 was also proposed.
机译:在过去的几十年中,基于TiO2的光催化已经获得了很多研究关注,作为将抗生素分解在水系统中的有效策略。然而,在TiO 2基光催化剂上的抗生素的降解途径很少已经研究过。在该作品中,通过光致液相制,通过光催化在高效液相色谱 - 质谱(HPLC-MS)的辅助下,通过光催化法制备Ag-TiO 2,并在可见光照射下通过Ag-P25的光催化降解途径。基于HPLC-MS结果,提出了五种降解中间体的化学式:一种是脱硫反应的产物;第二种是磺胺酰胺键粘合反应的产物;其他是由& oh& /粗体引发的氧化和取代产物。通过反应性物种诱捕实验研究了O-2( - ),OH和H(+)在光催化降解过程中的贡献。在上述结果的基础上,可以推断出存在三种可能的光催化降解磺胺嗪,即脱硫,磺酰胺键 - 破坏和氨基的氧化。此外,还提出了Ag-P25的光催化机理。

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