首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Photodegradation of sulfonamides by g-C3N4 under visible light irradiation: Effectiveness, mechanism and pathways
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Photodegradation of sulfonamides by g-C3N4 under visible light irradiation: Effectiveness, mechanism and pathways

机译:可见光照射下G-C3N4的光降解磺胺酰胺:有效性,机制和途径

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摘要

For the first time, the photocatalytic degradation of sulfamethoxazole (SMX), sulfisoxazole (SSX), sulfadiazine (SDZ), sulfamerazine (SMZ) by g-C3N4 under visible light irradiation was investigated. Results revealed that compared to photolysis, the photocatalytic degradation efficiencies of the four sulfonamides were significantly enhanced with the addition of g-C3N4, and more than 90% of photodegradation removal was obtained. The effects of typical water quality parameters, including solution pH, bicarbonate ion and humic acid, on the photodegradation process were discussed. It was found that although the photodegradation of the four sulfonamides exhibited different trends under the variation of the water quality parameters, an excellent photocatalytic removal could always be achieved, illustrating the robustness and effectiveness of the g-C3N4 photodegradation process. The ESR measurements showed that both OH center dot and center dot O-2(-) were produced in the photocatalytic process of g-C3N4 under visible light irradiation. And trapping experiments confirmed that center dot O-2(-) and holes played a significant role in the photodegradation of SMX, SDZ and SMZ; but holes and OH center dot were the main oxidative species for SSX degradation. Finally, according to the oxidation products detected by ultra-high performance liquid chromatography-tandem mass spectrometric (UPLC/MS/MS), the degradation pathways of the four sulfonamides were proposed and compared. It was found that there were some common pathways shared by the different sulfonamides, such as cleavage of S-N bond and hydroxylation of the benzene ring (the main degradation pathways for SSX). More importantly, some specific photodegradation pathways were also identified: (1) the nitration of amino group on the benzene ring occurred for SMX, SDZ and SMZ (the main degradation pathway for SMX, SDZ and SMZ), but not for SSX; (2) the bond cleavage between benzene ring and S occurred only in degradation of SSX; and (3) the carboxylation of the methyl group occurred only in degradation of SMZ. (C) 2017 Elsevier B.V. All rights reserved.
机译:首次,研究了在可见光照射下通过G-C3N4进行磺胺甲恶唑(SMX),磺胺唑(SDZ),磺胺嗪(SDZ),Sulfamerazine(SMZ)的光催化降解。结果表明,与光解相比,通过加入G-C3N4显着提高了四个磺酰胺的光催化降解效率,得到了超过90%的光降解去除。讨论了典型水质参数,包括溶液pH,碳酸氢盐离子和腐殖酸,在光降解过程中的影响。结果发现,尽管在水质参数的变化下,四种磺酰胺的光降解表现出不同的趋势,但始终可以实现优异的光催化去除,说明G-C3N4光降解过程的鲁棒性和有效性。 ESR测量显示OH中心点和中心点O-2( - )在可见光照射下G-C3N4的光催化过程中产生。诱捕实验证实,中心点O-2( - )和孔在SMX,SDZ和SMZ的光电降级中起着重要作用;但孔和OH中心点是SSX降解的主要氧化物种。最后,根据超高效液相色谱 - 串联质谱(UPLC / MS / MS)检测的氧化产物,提出并比较了四种磺酰胺的降解途径。发现有一些常见的途径由不同的磺酰胺共享,例如S-N键的切割和苯环的羟基化(SSX的主要降解途径)。更重要的是,还鉴定了一些特定的光降解途径:(1)SMX,SDZ和SMZ(SMX,SDZ和SMZ的主要降解途径)发生苯环上的氨基硝化氨基,但不适用于SSX; (2)苯环和S之间的键切割仅发生在SSX的降解中; (3)甲基的羧化仅发生在SMZ的降解中。 (c)2017 Elsevier B.v.保留所有权利。

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