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Comparative study on the photocatalytic behaviour of titanium oxide thermal sprayed coatings from powders and suspensions

机译:粉末和悬浮液对氧化钛热喷涂涂层光催化性能的比较研究

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摘要

This work presents a study of the microstructures and photocatalytic behaviour of titanium oxide coatings obtained by thermal spraying of agglomerated nanopowders and suspensions. Fine TiO2 Degussa P25 nanopowder, generally considered as the reference material in photocatalytic applications, was used as the material feedstock. HVOF process and suspension thermal spraying were used to prepare photocatalytic titania coatings. The coatings were mainly characterised by means of SEM and X-ray diffraction. The photocatalytic performance was evaluated based on decolouration of the pink dye Rhodamine B and degradation of gaseous acetaldehyde. A lower degree of pollutant degradation was found for deposits prepared by HVOF spraying of granules due principally to the low content of the photocatalytically active phase, i.e. anatase. Complete photocatalytic degradation of the organic compounds was recorded for the suspension-sprayed coatings. Based on the current results, suspension thermal spraying appears to be the better choice for preparing photocatalytically active titanium oxide surfaces for the removal of organic pollutants.
机译:这项工作提出了通过热喷涂团聚的纳米粉和悬浮液获得的氧化钛涂层的微观结构和光催化行为的研究。细的TiO2 Degussa P25纳米粉通常用作光催化应用中的参考材料,用作原料。采用HVOF工艺和悬浮热喷涂制备了光催化二氧化钛涂层。主要通过SEM和X射线衍射表征涂层。基于粉红色染料若丹明B的脱色和气态乙醛的降解来评估光催化性能。对于通过HVOF喷涂颗粒制备的沉积物,发现污染物降解程度较低,这主要是由于光催化活性相即锐钛矿的含量低。记录了悬浮液喷涂涂料中有机化合物的完全光催化降解。根据目前的结果,悬浮热喷涂似乎是制备用于去除有机污染物的光催化活性氧化钛表面的更好选择。

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