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Decolourisation of Metanil Yellow by visible-light photocatalysis with N-doped TiO_2 nanoparticles: influence of system parameters and kinetic study

机译:N掺杂的TiO_2纳米粒子在可见光催化下对甲硝黄的脱色:系统参数和动力学研究的影响

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A nitrogen-doped photocatalyst (N-TiO_2) is prepared from 15% TiCl_3 and 25% aqueous NH_3 solution as precursor. The synthesised material is characterised by XRD, BET, TEM, DRS and XPS and is used for photocatalytic decolourisation of Metanil Yellow under visible-light illumination. The experimental parameters, viz, photocatalyst dose, initial dye concentration and solution pH influence the decolourisation process. At pH 3.5, N-TiO_2 can decolourise almost 89% of the dye at equilibrium within 240 min. COD study reveals ~92% mineralisation of the dye in 360 min of irradiation. The photocatalytic reaction is allowed to proceed only after the attainment of adsorption equilibrium between N-TiO_2-Metanil Yellow. The adsorption is carried out by batch process under different experimental conditions, namely, N-TiO_2 dose, initial dye concentration and solution pH. The adsorption process attains equilibrium within 60 min and follows Lagergren first-order kinetics. On the other hand, the photocatalytic decolourisation of Metanil Yellow is suitably fitted with the modified Langmuir-Hinselwood model. Modification of TiO_2 improved the decolourisation of the dye by ~8 times compared to TiO_2 P25.
机译:由15%TiCl_3和25%NH_3水溶液作为前驱体制备了氮掺杂的光催化剂(N-TiO_2)。所合成的材料通过XRD,BET,TEM,DRS和XPS表征,并且在可见光下用于美他尼黄的光催化脱色。实验参数,即光催化剂剂量,初始染料浓度和溶液pH值会影响脱色过程。在pH 3.5下,N-TiO_2可以在240分钟内达到平衡,从而使几乎89%的染料脱色。 COD研究表明,在360分钟的照射下,该染料的矿化率为约92%。仅在达到N-TiO_2-Metanil Yellow之间的吸附平衡后才允许进行光催化反应。在不同的实验条件下,即N-TiO_2剂量,初始染料浓度和溶液pH值,通过分批工艺进行吸附。吸附过程在60分钟内达到平衡,并遵循Lagergren一级动力学。另一方面,美他尼黄的光催化脱色适合于改良的Langmuir-Hinselwood模型。与TiO_2 P25相比,TiO_2的改性将染料的脱色提高了约8倍。

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