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首页> 外文期刊>Journal of the air & waste management association >Feasibility of Ultraviolet-Light-Emitting Diodes as an Alternative Light Source for Photocatalysis
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Feasibility of Ultraviolet-Light-Emitting Diodes as an Alternative Light Source for Photocatalysis

机译:紫外线发光二极管作为光催化的替代光源的可行性

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The objective of this study was to determine whether ultraviolet-light-emitting diodes (UV-LEDs) could serve as an efficient photon source for heterogeneous photocataly-tic oxidation (PCO). An LED module consisting of 12 high-power UV-A (λ_(max) = 365 nm) LEDs was designed to be interchangeable with a UV-A fluorescent black light blue (BLB) lamp for a bench scale annular reactor packed with silica-titania composite (STC) pellets. Lighting and thermal properties of the module were characterized to assess its uniformity and total irradiance. A forward current (I_F) of 100 mA delivered an average irradiance of 4.0 mW cm~(-2) at a distance of 8 mm, which is equivalent to the maximum output of the BLB, but the irradiance of the LED module was less uniform than that of the BLB. The LED and BLB reactors were tested for the oxidization of ethanol (50 ppm_v) in a continuous-flow-through mode with 0.94 sec residence time. At the same average irradiance, the UV-A LED reactor resulted in a lower CO_2 production rate (19.8 vs. 28.6 nmol L~(-1) s~(-1)), lower ethanol removal (80% vs. 91%), and lower mineralization efficiency (28% vs. 44%) than the UV-A BLB reactor. Ethanol mineralization was enhanced with the increase of the irradiance at the catalyst surface. This result suggests that reduced ethanol mineralization in the LED reactor relative to the BLB reactor at the same average irradiance could be attributed to the nonuniform irradiance over the photocatalyst, that is, a portion of the catalyst was exposed to less than the average irradiance. The potential of UV-A LEDs may be fully realized by optimizing the light distribution over the catalyst and utilizing their instantaneous "on" and "off" feature for periodic irradiation. Nevertheless, our results also showed that the current UV-A LED module had the same wall plug efficiency (WPE) of 13% as that of the UV-A BLB, demonstrating that UV-A LEDs are a viable photon source both in terms of WPE and PCO efficiency.
机译:这项研究的目的是确定是否可以将紫外线发光二极管(UV-LED)用作异质光催化氧化(PCO)的有效光子源。一个由12个大功率UV-A(λ_(max)= 365 nm)LED组成的LED模块设计为可与UV-A荧光黑光蓝(BLB)灯互换使用,用于台式规模的装有二氧化硅的环形反应堆。二氧化钛复合材料(STC)颗粒。对模块的照明和热性能进行了表征,以评估其均匀性和总辐照度。 100 mA的正向电流(I_F)在8 mm的距离处发出4.0 mW cm〜(-2)的平均辐照度,这等效于BLB的最大输出,但LED模块的辐照度不太均匀比BLB的以0.94秒的停留时间在连续流通模式下测试了LED和BLB反应器中乙醇(50ppm_v)的氧化。在相同的平均辐照度下,UV-A LED反应器导致较低的CO_2产生率(19.8 vs. 28.6 nmol L〜(-1)s〜(-1)),乙醇去除率较低(80%对91%) ,并且矿化效率比UV-A BLB反应器低(28%比44%)。乙醇矿化作用随着催化剂表面辐照度的增加而增强。该结果表明,在相同的平均辐照度下,LED反应器中相对于BLB反应器的乙醇矿化减少可能归因于光催化剂上的辐照度不均匀,即一部分催化剂暴露于低于平均辐照度的区域。通过优化催化剂上的光分布并将其瞬时“开”和“关”功能用于定期照射,可以完全实现UV-A LED的潜力。尽管如此,我们的结果还表明,当前的UV-A LED模块的壁挂效率(WPE)与UV-A BLB相同,这表明UV-A LED在以下方面均是可行的光子源: WPE和PCO效率。

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