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Photocatalytic Activity of Fe/Ti Mixed Oxide for Degrading Humic Acid in Water

机译:Fe / Ti混合氧化物的光催化活性降解水中腐殖酸

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The comparative experiments for removing humic acid as environmental pollutant were conducted by adsorption on iron oxide, photooxidation in the presence of titanium dioxide catalyst and combined adsorption-photooxidation by iron-titanium mixed metal oxides, where all these active components were immobilized on polypropylene granules. The main purpose of the work was the combination of adsorption and photocatalytic oxidation processes to remove humic acid. The granules with iron-titanium mixed oxide for treating humic acid gave much better results with 1.2~3 times higher removal rates comparing to the other two single coated oxides at certain pH values. And the order of removal efficiency according to pH was the same as for single iron oxide-coated granules. The ratio 1:2 of iron oxide/titanium dioxide was found optimal for maximal decolorization of humic acid solution. The total organic carbon decrease of humic acid in each experiments, when it was pre-equilibrated with mixed oxides-coated granules in the dark for 30 min and without pre-equilibration, was very similar. The results suggested that the mechanism of humic acid removal may be not only a respectively combined adsorption and photooxidation by iron oxide and titanium oxides, but an enhanced photooxidation reaction as a result of concentrating humic acid on titanium oxide surface by iron oxide.
机译:通过对氧化铁的吸附,在二氧化钛催化剂存在下的吸附和铁 - 钛混合金属氧化物中的混合吸附 - 光氧化,将所有这些活性组分固定在聚丙烯颗粒上的所有这些活性组分在聚丙烯颗粒上固定的所有这些活性组分在二氧化钛催化剂的光氧化和合并吸附 - 光氧化中进行的对比实验。该工作的主要目的是吸附和光催化氧化过程的组合以去除腐殖酸。用于治疗腐殖酸的铁 - 钛混合氧化物的颗粒产生了更好的结果,其去除率比某些pH值的其他两个单一涂覆氧化物比较的较高的去除率较高。根据pH的去除效率的顺序与单氧化铁涂层颗粒相同。发现耐氧化铁/二氧化钛的比例1:2最大脱色腐殖酸溶液。每次实验中腐殖酸的总有机碳减少,当它在黑暗中用混合氧化物涂覆的颗粒预平衡30分钟并且没有预平衡,非常相似。结果表明,腐殖酸去除的机理不仅可以通过氧化铁和氧化钛分别是分别的混合吸附和光氧化,而是通过氧化铁浓缩纯氧化钛表面上的腐殖酸而增强的光氧化反应。

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