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Photocatalytic performance of cylindrical reactor inserted with UV light-emitting-diodes for purification of low-level toxic volatile organic compounds

机译:装有紫外发光二极管的圆柱形反应器对低水平有毒挥发性有机化合物的光催化性能

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The present study investigated the photocatalytic performance of a cylindrical reactor inserted with UV light-emitting-diodes for the decomposition of low-level (0.1 ppm) gas-phase organic compounds (benzene, toluene, ethyl benzene and xylene (BTEX)). The morphological and optical properties of photo-catalysts (Degussa P-25 TiO_2) baked at different temperatures were determined using a range of spectral instruments. The photocatalyst baked at 350℃ exhibited the highest conversion efficiencies for both benzene and toluene (81 and ~100%, respectively). The conventional lamp showed a higher conversion efficiency for benzene compared to the 380-nm UV-LED and a higher conversion efficiency for benzene and toluene than the 365-nm UV-LED. However, the ratios of conversion efficiency to electric power consumption were 2.5-3.0 times higher for the latter light source than the former source. Moreover, as the residence time increased from 0.2 to 1.2 min, the average conversion efficiencies for BTEX of the 3-h photocatalytic process increased from nearly zero to 81%, 7 to nearly 100%, 20 to nearly 100%, and 29-30 to nearly 100%, respectively. The cylindrical photocatalytic reactor inserted with UV-LEDs could be energy-efficiently applied for the decomposition of low-level toxic compounds after optimization of the operating conditions.
机译:本研究研究了插入紫外线发光二极管的圆柱形反应器对低含量(0.1 ppm)气相有机化合物(苯,甲苯,乙苯和二甲苯(BTEX))的分解的光催化性能。使用一系列光谱仪器测定在不同温度下烘烤的光催化剂(Degussa P-25 TiO_2)的形态和光学性质。在350℃下烘烤的光催化剂对苯和甲苯的转化率最高(分别为81%和〜100%)。与380 nm的UV-LED相比,常规灯对苯的转换效率更高,对苯和甲苯的转换效率比365 nm的UV-LED更高。但是,后一种光源的转换效率与功耗的比是前一种光源的2.5-3.0倍。此外,随着停留时间从0.2分钟增加到1.2分钟,3-h光催化过程中BTEX的平均转化效率从近零增加到81%,7到近100%,20到近100%和29-30分别达到近100%。在优化运行条件后,可将装有UV-LED的圆柱形光催化反应器高效节能地用于分解低含量的有毒化合物。

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