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Photocatalytic mineralisation of humic acids using TiO2 modified by tungsten dioxide/ hydrogen peroxide

机译:二氧化钨/过氧化氢改性的TiO2对腐植酸的光催化矿化

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Photocatalytic mineralisation of humic acids using TiO2 modified by tungsten dioxide/ hydrogen peroxideTiO2 of anatase structure was modified by tungsten dioxide and H2O2 in order to obtain WO3-TiO2 photocatalyst with enhanced photocatalytic activity under both, UV and artificial solar light irradiations. WO2 was dissolved in 30% H2O2 and mixed with TiO2 in a vacuum evaporator at 70°C. Such modified TiO2 was dried and then calcinated at 400 and 600°C.The prepared samples and unmodified TiO2 were used for the photocatalytic decomposition of humic acids (Leonardite standard IHSS) in the aqueous solution under irradiations of both, UV and artificial solar light. Modification of TiO2 with tungsten dioxide and H2O2 improved separation of free carriers in TiO2 which resulted in the increase of OH radicals formation. Calcination caused an increase of anatase crystals and higher yield in OH radicals. The uncalcined samples showed high abilities for the adsorption of HA. Combination of adsorption abilities and photocatalytic activity of photocatalyst caused that the uncalcined TiO2 modified with WO2/H2O2 showed the shortest time of HA mineralisation. The mineralisation of HA under the artificial solar light was much lower than under the UV. It was proved that, although OH radicals are powerful in the decomposition of HA, adsorption can facilitate the contact of the adsorbed molecules with the photocatalyst surface and accelerate their photocatalytic decomposition.
机译:使用二氧化钨/过氧化氢改性的TiO2对腐殖酸的光催化矿化锐钛矿结构的TiO2被二氧化钨和H2O2改性,从而获得在紫外线和人工太阳光照射下具有增强的光催化活性的WO3-TiO2光催化剂。将WO2溶解在30%的H2O2中,并在70°C的真空蒸发器中与TiO2混合。将这种改性的TiO2干燥,然后在400和600°C下煅烧。制得的样品和未改性的TiO2在紫外线和人工太阳光照射下用于水溶液中的腐殖酸(莱纳德标准IHSS)的光催化分解。用二氧化钨和H2O2改性TiO2改善了TiO2中自由载流子的分离,从而导致OH自由基形成的增加。煅烧导致锐钛矿晶体的增加和OH自由基的更高产率。未煅烧样品显示出高的HA吸附能力。光催化剂的吸附能力和光催化活性的共同作用是,用WO2 / H2O2改性的未煅烧TiO2具有最短的HA矿化时间。在人工太阳光下HA的矿化度比在紫外线下低。已经证明,尽管OH自由基在HA的分解中具有强力,但是吸附可以促进被吸附的分子与光催化剂表面的接触并加速其光催化分解。

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