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Advanced Oxidation Processes in Triton X-100 and Wash-up Liquid Removal from Wastewater Using Modified TiO2/Al2O3 Photocatalysts

机译:Triton X-100中的高级氧化工艺和使用改性的TiO2 / Al2O3光催化剂去除废水中的洗液

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摘要

Photocatalytic methods were applied to remove the recalcitrant or toxic pollutants from the water. The two models of wastewater containing either non-ionic surfactant Triton X-100 or commercially available wash-up liquid were tested in a self-constructed band reactor during the laboratory studies. The photocatalyst, being typed TiO2, was supported by porous Al2O3 and modified by the addition of Cu, Fe, Zn, Ni, Mo or Co. The photocatalysts were characterised by N2 adsorption–desorption, XRF, XRD, SEM-EDX, Raman and UV–Vis spectroscopy. All catalysts were efficient in the photocatalytic oxidation of surfactants, and they enabled at least 85 % COD reduction. TiO2/Al2O3 photocatalysts modified by the transition metals were efficient only for more complicated compositions of surfactants. The effect of H2O2 (0.01 vol.%) addition was also examined and compared with a type of compound and catalyst used—in this case a positive effect for Triton X-100 was only observed over the photocatalyst modified by Ni. When it comes to the wash-up liquid photoremoval, all studied photocatalysts seem to be slightly influenced by H2O2 addition. It was also observed that it is not economically justified to conduct such treatment for more than 2 h.
机译:应用光催化方法从水中去除顽固或有毒污染物。在实验室研究过程中,在自建带式反应器中测试了两种包含非离子表面活性剂Triton X-100或市售洗涤液的废水模型。 TiO2类型的光催化剂由多孔Al2O3负载,并通过添加Cu,Fe,Zn,Ni,Mo或Co进行改性。该光催化剂的特征在于N2吸附-解吸,XRF,XRD,SEM-EDX,拉曼和紫外可见光谱。所有催化剂在表面活性剂的光催化氧化中均有效,并且它们可使COD降低至少85%。过渡金属改性的TiO2 / Al2O3光催化剂仅对更复杂的表面活性剂组合物有效。还检查了添加H2O2(0.01%(体积))的效果并将其与所用化合物和催化剂的类型进行比较-在这种情况下,仅在Ni改性的光催化剂上观察到Triton X-100的正面效果。当涉及洗涤液的光脱除时,所有研究的光催化剂似乎都受到过氧化氢添加的轻微影响。还观察到进行这种处理超过2小时在经济上是不合理的。

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