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首页> 外文期刊>Separation and Purification Technology >Highly effective buoyant photocatalyst prepared with a novel layered-TiO2 configuration on polypropylene fabric and the degradation performance for methyl orange dye under UV-Vis and Vis lights
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Highly effective buoyant photocatalyst prepared with a novel layered-TiO2 configuration on polypropylene fabric and the degradation performance for methyl orange dye under UV-Vis and Vis lights

机译:在聚丙烯织物上以新颖的TiO2分层结构制备的高效浮力光催化剂以及在UV-Vis和Vis光下对甲基橙染料的降解性能

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Different layers of TiO2 were immobilized on polypropylene fabric (PPF) to obtain highly active buoyant photocatalysts. The prepared photocatalysts were examined for the degradation of methyl orange (MO) dye under UV and visible lights. To increase the loading rate of TiO2, a rutile TiO2 layer was first immobilized onto PPF, followed by another anatase TiO2 layer on the top (denoted as 'R+A'). In comparison with PPF immobilized with one layer of anatase TiO2 (denoted as 'A'), or two layers of anatase TiO2 (denoted as 'A+A') or even three layers of anatase TiO2 (denoted as 'A+A+A'), the 'R+A' approach achieved the highest loading of 116 g TiO2 per square meter PPF, being as much as about 1.5-2.3 times of those immobilized by other approaches. All the prepared photocatalysts were buoyant and the 'R+A' photocatalyst appeared to be the most active one for both UV and visible lights. Under an artificial light source (with UV 48 W/m~2 and visible light 178 W/m~2), MO dye, though usually difficult to be degraded by other methods, was found to be completely degraded within 2 h by the 'R+A' photocatalyst (at an initial MO dye concentration of 15 mg/L). High performance liquid chromatography (HPLC) analysis indicated that the MO dye degradation under UV or visible light possibly followed different degradation pathways in the catalytic reactions.
机译:将不同层的TiO2固定在聚丙烯织物(PPF)上以获得高活性的浮力光催化剂。在紫外线和可见光下检查制备的光催化剂对甲基橙(MO)染料的降解。为了提高TiO2的负载率,首先将金红石型TiO2层固定在PPF上,然后将另一个锐钛矿型TiO2层固定在顶部(称为“ R + A”)。与固定有一层锐钛矿TiO2(表示为'A')或两层锐钛矿TiO2(表示为'A + A')或什至三层锐钛矿TiO2(表示为'A + A + A)固定的PPF相比'),“ R + A”方法的最高负载量为每平方米PPF 116 g TiO2,约为其他方法固定的TiO2负载量的1.5-2.3倍。所有制备的光催化剂都是漂浮的,并且“ R + A”光催化剂似乎是对紫外线和可见光最​​活跃的一种。在人造光源(紫外线48 W / m〜2和可见光178 W / m〜2)下,虽然MO染料通常很难通过其他方法降解,但发现MO染料会在2 h内完全降解。 R + A'光催化剂(初始MO染料浓度为15 mg / L)。高效液相色谱(HPLC)分析表明,在紫外或可见光下,MO染料的降解可能遵循催化反应中的不同降解途径。

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