The influence of pulse modulated UV LEDs of different wavelengths on the photocatalytic degradation of atmospheric toluene and NO

C. Ehm, D. Stephan
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Abstract

Fluorescent tubes, a continuous source of UVA radiation, are increasingly being replaced by ultraviolet light-emitting diodes (UV LEDs or UVEDs), which emit an almost discrete spectrum (5 nm bandwidth). This creates both problems and opportunities from a photocatalytic point of view. In this paper, we report the influence of UVED radiation on the performance of an industrially produced TiO2 photocatalytic coating by measuring the degradation of nitrogen oxide (NO) and toluene (C6H5CH3) from a test atmosphere in a laboratory test setup. The influence of four commercially available UVED types (365 nm, 385 nm, 395 nm, and 415 nm) on the performance of a commonly used photocatalyst was compared. In a subsequent investigation, we switched from continuous to pulse-modulated LED operation and investigated its influence on the photocatalytic activity of the assembly. We could show that UVEDs are suitable replacements for fluorescent lamps when carefully chosen to the absorption spectrum of the used photocatalyst. In addition, the pulse width and pulse frequency modulation of the LED current show non-linear correlations with the resulting photocatalytic activity. The activity remains unexpectedly high with short pulse widths and low frequencies. By adjusting the control of the UVEDs accordingly, much energy can thus be saved during operation without reducing the catalytic activity.
不同波长的脉冲调制UV led对光催化降解大气中甲苯和NO的影响
荧光管是UVA辐射的连续来源,越来越多地被紫外线发光二极管(UV LED或UVED)所取代,后者发射几乎离散的光谱(5 nm带宽)。从光催化的角度来看,这既带来了问题,也带来了机遇。在本文中,我们通过在实验室测试装置中测量测试气氛中氮氧化物(NO)和甲苯(C6H5CH3)的降解,报告了UVED辐射对工业生产的TiO2光催化涂层性能的影响。比较了四种市售UVED类型(365nm、385nm、395nm和415nm)对常用光催化剂性能的影响。在随后的研究中,我们从连续LED操作切换到脉冲调制LED操作,并研究了其对组件光催化活性的影响。当仔细选择所用光催化剂的吸收光谱时,我们可以证明UVED是荧光灯的合适替代品。此外,LED电流的脉冲宽度和脉冲频率调制显示出与所产生的光催化活性的非线性相关性。在短脉冲宽度和低频率的情况下,活性保持出乎意料的高。因此,通过相应地调节UVED的控制,可以在操作过程中节省大量能量,而不会降低催化活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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