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Photocatalytic Oxidation of Low-Level Airborne 2-Propanol and Trichloroethylene over Titania Irradiated with Bulb-Type Light-Emitting Diodes

机译:灯泡型发光二极管辐照二氧化钛对低浓度机载2-丙醇和三氯乙烯的光催化氧化作用

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摘要

This study examined the photocatalytic oxidation of gas-phase trichloroethylene (TCE) and 2-propanol, at indoor levels, over titanium dioxide (TiO2) irradiated with light-emitting diodes (LED) under different operational conditions. TiO2 powder baked at 450 °C exhibited the highest photocatalytic decomposition efficiency (PDE) for TCE, while all photocatalysts baked at different temperatures showed similar PDEs for 2-propanol. The average PDEs of TCE over a three hour period were four, four, five, and 51% for TiO2 powders baked at 150, 250, 350, and 450 °C, respectively. The average PDEs of 2-propanol were 95, 97, 98, and 96% for TiO2 powders baked at 150, 250, 350, and 450 °C, respectively. The ratio of anatase at 2θ = 25.2° to rutile at 2θ = 27.4° was lowest for the TiO2 powder baked at 450 °C. Although the LED-irradiated TiO2 system revealed lower PDEs of TCE and 2-propanol when compared to those of the eight watt, black-light lamp-irradiated TiO2 system, the results for the PDEs normalized to the energy consumption were reversed. Other operational parameters, such as relative humidity, input concentrations, flow rate, and feeding type were also found to influence the photocatalytic performance of the UV LED-irradiated TiO2 system when applied to the cleaning of TCE and 2-propanol at indoor air levels.
机译:这项研究研究了在不同操作条件下,在室内水平下,用发光二极管(LED)辐射的二氧化钛(TiO2)对气相三氯乙烯(TCE)和2-丙醇的光催化氧化作用。在450°C下烘烤的TiO2粉末对TCE表现出最高的光催化分解效率(PDE),而在不同温度下烘烤的所有光催化剂对2-丙醇表现出相似的PDEs。在150、250、350和450°C下烘烤的TiO2粉末,三小时内三氯乙烯的平均PDE分别为4%,4%,5%和51%。在150、250、350和450°C烘烤的TiO2粉末中,2-丙醇的平均PDE分别为95%,97%,98%和96%。在450°C烘烤的TiO2粉末中,在2θ= 25.2°的锐钛矿与在2θ= 27.4°的金红石的比率最低。尽管与八瓦黑光灯辐照的TiO2系统相比,LED辐照的TiO2系统显示出较低的TCE和2-丙醇PDEs,但将PDEs归一化为能耗的结果却相反。还发现其他操作参数,例如相对湿度,输入浓度,流速和进料类型,在室内空气水平下用于清洁TCE和2-丙醇时,也会影响UV LED辐照的TiO2系统的光催化性能。

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