Department of Chemical Engineering, National Taiwan University, Taipei 10617, Taiwan.
J Hazard Mater. 2013 Nov 15;262:717-25. doi: 10.1016/j.jhazmat.2013.09.037. Epub 2013 Sep 23.
The removal of volatile organic compounds (VOCs) at ppb level is one of the most critical challenges in clean rooms for the semiconductor industry. Photocatalytic oxidation is an innovative and promising technology for ppb-level VOCs degradation. We have designed a fiber-illuminated honeycomb reactor (FIHR) in which the removal efficiency of m-xylene is significantly enhanced to 96.5% as compared to 22.0% for UV irradiation only. The results indicate that photocatalysts not only play the role to substantially oxidize m-xylene, but also alter the chemical properties of xylene under UV illumination. Using the FIHR with Mn-TiO2 photocatalyst not only increased the m-xylene removal efficiency, but also increased the CO2 selectivity. Interestingly, Mn-TiO2 in FIHR also showed a very good reusability, 93% removal efficiency was still achieved in 72-h in reaction. Thus, the FIHR gave very high removal efficiency for xylene at ppb level under room temperature. The FIHR has great potential application in the clean room for the air purification system in the future.
去除挥发性有机化合物(VOCs)达到 ppb 级别是半导体行业洁净室面临的最关键挑战之一。光催化氧化是一种具有创新性和前景的 ppb 级 VOCs 降解技术。我们设计了一种纤维照射蜂窝状反应器(FIHR),与仅 UV 照射相比,间二甲苯的去除效率从 22.0%显著提高到 96.5%。结果表明,光催化剂不仅能大幅氧化间二甲苯,而且能在 UV 照射下改变二甲苯的化学性质。使用 Mn-TiO2 光催化剂的 FIHR 不仅提高了间二甲苯的去除效率,而且提高了 CO2 的选择性。有趣的是,FIHR 中的 Mn-TiO2 还表现出非常好的可重复使用性,在 72 小时的反应中仍保持 93%的去除效率。因此,FIHR 在室温下对 ppb 级的二甲苯具有很高的去除效率。FIHR 在未来的洁净室空气净化系统中有很大的潜在应用价值。