Department of Mechanical Engineering, National Taipei University of Technology, Taipei, Taiwan.
Environ Technol. 2023 Sep;44(22):3405-3414. doi: 10.1080/09593330.2022.2058425. Epub 2022 Apr 3.
The use of ultraviolet-C (UV-C) light-emitting diodes (LEDs) as a water sterilization light source poses a serious challenge in heat dissipation. High junction temperatures reduce the radiant power and lifespan of UV-C LEDs. In this study, a novel self-cooling water disinfection reactor was developed to dissipate Joule heat from UV-C LEDs. The advantage of the self-cooling design is that cooling can be achieved without requiring additional power consumption and cooling liquid. The effects of the water flow rate and driving current of UV-C LEDs on the sterilization of Escherichia coli were investigated for a traditional flow-through reactor and a reactor with self-cooling. The experimental results indicated that an increase in driving current resulted in a considerable increase in the LED temperature of the flow-through reactor but only a marginal increase in the LED temperature of the self-cooling reactor. Under a driving current of 150 mA, the LED temperature of the self-cooling reactor was 55.5°C less than that of the flow-through reactor. The time required by the self-cooling reactor to reach the steady state decreased as the water flow rate increased. Under a flow rate of 100 mL/min, the self-cooling reactor reached the steady state within 62 and 70 s when the driving current was 100 and 150 mA, respectively. Moreover, the average irradiance and inactivation values of the self-cooling reactor were up to 16.5% and 26.0% higher than those of the flow-through reactor, respectively.
采用紫外线-C(UV-C)发光二极管(LED)作为水杀菌光源,在散热方面存在严重挑战。高结温会降低 UV-C LED 的辐射功率和使用寿命。在这项研究中,开发了一种新型自冷式水消毒反应器,以散发 UV-C LED 的焦耳热。自冷设计的优点是无需额外的功耗和冷却液体即可实现冷却。研究了传统流通式反应器和自冷式反应器中 UV-C LED 的水流量和驱动电流对大肠杆菌杀菌的影响。实验结果表明,驱动电流的增加会导致流通式反应器中 LED 温度显著升高,但自冷式反应器中 LED 温度仅略有升高。在 150 mA 的驱动电流下,自冷式反应器的 LED 温度比流通式反应器低 55.5°C。自冷式反应器达到稳定状态所需的时间随水流量的增加而减少。在流量为 100 mL/min 时,当驱动电流分别为 100 和 150 mA 时,自冷式反应器分别在 62 和 70 s 内达到稳定状态。此外,自冷式反应器的平均辐照度和灭活值分别比流通式反应器高 16.5%和 26.0%。