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Experimental study of humic acid degradation and theoretical modelling of catalytic ozonation

机译:腐殖酸降解的实验研究及催化臭氧化的理论模型

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The efficiency of TiO2 as a catalyst in the ozonation of humic acid (HA) was evaluated in a comprehensive manner. Ozonation, catalytic ozonation and adsorption experiments were conducted using both synthetic HA solution and natural water. HA degradation was evaluated in terms of DOC, VIS400 and UV254. It was shown that the addition of catalyst positively affects the mechanism of ozonation. An increase in HA degradation was observed for all these parameters. The impact of catalyst dose and initial pH value of HA on the efficacy of catalytic ozonation was investigated. The highest removal efficiencies were achieved with the dose of 1 g l(-1) of TiO2 (Degussa P-25) and in the acidic pH region. The catalytic ozonation process was efficient also on natural water component although not at the same level as it was on synthetic water. The adsorptive feature of P-25 was considered to have a clear evidence of the catalytic ozonation mechanism. The mechanism of catalysis on the surface of metal oxides was elucidated with the help of quantum-chemical calculations. In the framework of Density Function Theory (DFT), the O-3 decomposition was calculated in the catalytic and non-catalytic processes. Donor-acceptor properties of the frontier (highest occupied and lowest unoccupied molecular orbitals, HOMO/LUMO) orbitals are discussed. Electron density distribution and reaction mechanism of superoxide particles formation, which participate in the process of HA ozonation are analyzed.
机译:全面评估了TiO2作为腐殖酸(HA)臭氧氧化催化剂的效率。使用合成HA溶液和天然水进行了臭氧化,催化臭氧化和吸附实验。根据DOC,VIS400和UV254评估了HA的降解。结果表明,催化剂的加入对臭氧化机理有积极的影响。对于所有这些参数,观察到HA降解的增加。研究了催化剂用量和HA初始pH值对催化臭氧化效果的影响。在酸性pH范围内,以1 g l(-1)的TiO2(Degussa P-25)的剂量可获得最高的去除效率。催化臭氧化过程对天然水成分也很有效,尽管其水平与合成水不同。 P-25的吸附特征被认为具有催化臭氧化机理的明确证据。借助量子化学计算,阐明了在金属氧化物表面催化的机理。在密度泛函理论(DFT)的框架内,在催化和非催化过程中计算了O-3的分解。讨论了边界(最高占据和最低未占据分子轨道,HOMO / LUMO)轨道的供体-受体性质。分析了参与HA臭氧化过程的超氧化物粒子的电子密度分布和反应机理。

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