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Functional Analysis in Long-Term Operation of High Power UV-LEDs in Continuous Fluoro-Sensing Systems for Hydrocarbon Pollution

机译:连续氟传感系统中大功率紫外线LED在碳氢化合物污染连续运行中的功能分析

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摘要

This work analyzes the long-term functionality of HP (High-power) UV-LEDs (Ultraviolet Light Emitting Diodes) as the exciting light source in non-contact, continuous 24/7 real-time fluoro-sensing pollutant identification in inland water. Fluorescence is an effective alternative in the detection and identification of hydrocarbons. The HP UV-LEDs are more advantageous than classical light sources (xenon and mercury lamps) and helps in the development of a low cost, non-contact, and compact system for continuous real-time fieldwork. This work analyzes the wavelength, output optical power, and the effects of viscosity, temperature of the water pollutants, and the functional consistency for long-term HP UV-LED working operation. To accomplish the latter, an analysis of the influence of two types 365 nm HP UV-LEDs degradation under two continuous real-system working mode conditions was done, by temperature Accelerated Life Tests (ALTs). These tests estimate the mean life under continuous working conditions of 6200 h and for cycled working conditions (30 s ON & 30 s OFF) of 66,000 h, over 7 years of 24/7 operating life of hydrocarbon pollution monitoring. In addition, the durability in the face of the internal and external parameter system variations is evaluated.
机译:这项工作分析了HP(大功率)UV-LED(紫外线发光二极管)作为内陆水中非接触,连续24/7实时实时氟传感污染物识别中的激发光源的长期功能。荧光是检测和鉴定碳氢化合物的有效替代方法。 HP UV-LED比传统的光源(氙气和汞灯)更具优势,并有助于开发低成本,非接触式紧凑型系统,以进行连续的实时野外作业。这项工作分析了波长,输出光功率以及粘度,水污染物温度的影响以及长期HP UV-LED工作操作的功能一致性。为了实现后者,通过温度加速寿命试验(ALT)对两种连续的实际系统工作模式条件下的两种365 nm HP UV-LED降解的影响进行了分析。这些测试估计,在碳氢化合物监测的24/7全寿命7年中,连续工作条件为6200 h,循环工作条件(30 s ON和30 s OFF)为66,000 h的平均寿命。另外,评估了内部和外部参数系统变化时的耐用性。

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