SRM-Research Institute, SRM University, Kattankulathur, Chennai, India.
Department of Applied Chemistry, Osaka Prefecture University, Gakuen-Cho 1-1, Sakai, Osaka, 599-8531, Japan.
Chemosphere. 2016 Jun;153:237-43. doi: 10.1016/j.chemosphere.2016.03.063. Epub 2016 Mar 25.
TiO2-encapsulated H-ZSM photocatalysts were prepared by physical mixing of TiO2 and zeolites. Pt was immobilized on the surface of the TiO2-encapsulated zeolite (H-ZSM) catalysts by a simple photochemical reduction method. Different weight ratios of both TiO2 and Pt were hybridized with H-ZSM and the catalytic performance of the prepared catalysts was investigated for 2-propanol oxidation in liquid phase and acetaldehyde in gas phase reaction. Around 5-10 wt% TiO2-encapsulated H-ZSM catalysts was found to be optimal amount for the effective oxidation of the organics. Prior to light irradiation, Pt-TiO2-H-ZSM showed considerable amount of catalytic degradation of 2-propanol in the dark, forming acetone as an intermediate. In this study, Pt has played a major and important role on the total oxidation of 2-propanol as well as acetaldehyde. As a result, no residual organics were present in the pores of the zeolites. The catalysts could be reused more than three times without losing their catalytic activity in both phases. The Pt-TiO2-H-ZSM photocatalysts could overcome the problem of strong adsorption of organics in the zeolite pores (after the reaction). Thus, Pt-TiO2-H-ZSM can be used as a potential catalyst for both liquid and gas phase oxidation of organic pollutants.
TiO2 封装的 H-ZSM 光催化剂通过 TiO2 和沸石的物理混合制备。Pt 通过简单的光化学还原法固定在 TiO2 封装沸石(H-ZSM)催化剂的表面上。不同比例的 TiO2 和 Pt 与 H-ZSM 混合,并研究了所制备的催化剂在液相中 2-丙醇氧化和气相中乙醛反应中的催化性能。发现约 5-10wt%的 TiO2 封装的 H-ZSM 催化剂是有效氧化有机物的最佳用量。在光照之前,Pt-TiO2-H-ZSM 在黑暗中对 2-丙醇有相当大的催化降解作用,形成丙酮作为中间产物。在这项研究中,Pt 在 2-丙醇和乙醛的完全氧化中发挥了主要和重要的作用。因此,沸石孔内没有残留的有机物。在两相中,催化剂重复使用三次以上而不损失其催化活性。Pt-TiO2-H-ZSM 光催化剂可以克服沸石孔内有机物强吸附的问题(反应后)。因此,Pt-TiO2-H-ZSM 可以用作液相和气相中有机污染物氧化的潜在催化剂。