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Application of ozonation and silveration for heterogeneous photocatalytic degradation of an aromatic surfactant

机译:臭氧化和镀锌对芳烃表面活性剂的非均相光催化降解的应用

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The efficiency of TiO2 based heterogeneous photocatalysis can be enhanced by its combination with other oxidative procedures such as ozonation and by the modification of the catalyst surface with noble metals (such as silver). In this work, degradation of 4-hydroxybenzenesulfonic acid (4-HBS, a key intermediate of the decomposition of benzenesulfonic acid) was thoroughly studied by application of the above mentioned procedures individually and also in various combinations. Detailed comparisons or these methods were realized by measurements of degradation and mineralization of 4-HBS as well as determination of characteristic hydroxy intermediates and sulfate ions. The degradation efficiency of combination of Ag-TiO2 based photocatalysis and ozonation was just about the sum of the efficiencies of the individual procedures, while mineralization efficacy of this combination proved to be highly synergic, considerably exceeding this feature of the air-Ag-TiO2 system, due to the increased rate of ozone decay producing ring-opening radicals. Accordingly, total mineralization of 4-HBS was realized under these conditions. Ozonation, however, caused an oxidative dissolution of the deposited silver from the surface of the catalyst. Even so, simultaneous application of Ag-TiO2 based heterogeneous photocatalysis and ozonation led to total mineralization faster than their consecutive combination did.
机译:通过其与其他氧化过程(如臭氧化)的组合和通过用贵金属(例如银)的改性而增强TiO 2的异质光催化的效率。在这项工作中,通过在单独和各种组合中施用上述方法,彻底研究了4-羟基苯磺酸(4-HBS,苯磺酸分解的关键中间体)的降解。通过测量4-HBS的降解和矿化以及测定特征羟基中间体和硫酸盐离子的测量来实现详细的比较或这些方法。基于Ag-TiO2的光催化和臭氧组合的降解效率恰好是各种程序的效率的总和,而这种组合的矿化效果被证明是高度协同的,显着超过Air-Ag-TiO2系统的这种特征,由于臭氧衰减率增加,产生开环自由基。因此,在这些条件下实现了4-HBS的总矿化。然而,臭氧化导致沉积的银氧化溶解来自催化剂的表面。即便如此,同时施用基于Ag-TiO2的异质光催化和臭氧,其总矿化速度快于它们的连续组合。

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