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Photocatalytic degradation of clofibric acid, carbamazepine and iomeprol using conglomerated TiO2 and activated carbon in aqueous suspension

机译:凝聚TiO2和活性炭在水悬浮液中光催化降解氯纤维酸,卡马西平和碘美普尔。

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The combination of powdered activated carbon (PAC) and TiO2 has been tested for synergistic/antagonistic effects in the photocatalytic degradation of carbamazepine, clofibric acid and iomeprol. Synergistic effects are thought to be caused by rapid adsorption on the PAC surface followed by diffusion to the TiO2 surface and photocatalytic degradation. The Freundlich constant KF was used for comparing the sorption properties of the three substances and it was found that KF for clofibric acid was 3 times lower than for carbamazepine and iomeprol, regardless of the kind of PAC used. A PAC with a distinct tendency to form conglomerates was selected so that a high percentage of the PAC surface was in direct proximity to the TiO2 surface. The photocatalytic degradation of the pharmaceutically active compounds studied followed pseudo-first order kinetics. Synergistic effects only occurred for clofibric acid (factor 1.5) and an inverse relationship between adsorption affinity and synergistic effects was found. High affinity of the target substances to the PAC surface seemed to be counterproductive for the photocatalytic degradation.
机译:已测试粉状活性炭(PAC)和TiO2的组合在卡马西平,氯纤维酸和碘美普尔的光催化降解中具有协同/拮抗作用。协同效应被认为是由PAC表面快速吸附,随后扩散到TiO2表面和光催化降解引起的。使用Freundlich常数KF来比较这三种物质的吸附性能,发现不管使用哪种PAC,氯纤酸的KF都比卡马西平和iomeprol低3倍。选择了具有形成团块的明显趋势的PAC,以便高百分比的PAC表面紧邻TiO2表面。研究的药物活性化合物的光催化降解遵循拟一级动力学。协同作用仅在氯纤维酸上发生(系数1.5),并且吸附亲和力与协同作用之间呈反比关系。目标物质对PAC表面的高亲和力似乎不利于光催化降解。

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