Rauch Kyle D, MacIsaac Sean A, Reid Bailey, Mullin Toni J, Atkinson Ariel J, Pimentel Anthony L, Stoddart Amina K, Linden Karl G, Gagnon Graham A
Centre for Water Resources Studies, Dalhousie University Halifax, NS, B3H 4R2, Canada.
Water Quality Research and Development, Southern Nevada Water Authority, 100 S City Pkwy Suite 700, Las Vegas 89106, NV, USA.
Water Res X. 2024 Oct 30;25:100271. doi: 10.1016/j.wroa.2024.100271. eCollection 2024 Dec 1.
UV light emitting diode (LED) disinfection technologies have advanced over the last decade and expanded the design space for applications in point of use, industrial, and now full-scale water treatment. This literature review examines the progression of UV LED technologies from 2007 to 2023 using key features such as total optical power, price, and wall-plug efficiency. The review found that optical power is increasing while the price per Watt is decreasing; however, the wall plug energy (WPE) is slowly improving over the last decade. These factors govern the feasibility of many UV LEDs applications and establish the current state of the art for these technologies. An analysis of inactivation rate constants for low-pressure, medium-pressure, and UV LED sources was undertaken and provides a comprehensive view of how current UV LED technologies compare to traditional technologies. This comparison found that UV LEDs perform comparably vs conventional UV technologies when disinfecting bacteria and viruses. Furthermore, comparison of reported reduction equivalent fluences for UV LED flow-through reactors at the bench-, pilot-, and full-scale were explored in this review, and it was found that LED treatment is becoming more effective at handling increased flowrates and has been proven to work at full-scale. UV LEDs do however require additional research into the impacts of water matrices at different wavelengths and the impact that each available LED wavelength has on disinfection. Overall, this work provides a broad assessment of UV disinfection technologies and serves as a state-of-the-art reference document for those who are interested in understanding this rapidly developing technology.
在过去十年中,紫外线发光二极管(LED)消毒技术取得了进展,并扩大了其在现场使用、工业以及现在的全规模水处理应用中的设计空间。这篇文献综述使用总光功率、价格和壁插效率等关键特征,研究了2007年至2023年紫外线LED技术的发展历程。该综述发现,光功率在增加,而每瓦价格在下降;然而,在过去十年中,壁插能量(WPE)提升缓慢。这些因素决定了许多紫外线LED应用的可行性,并确立了这些技术的当前技术水平。对低压、中压和紫外线LED光源的灭活速率常数进行了分析,全面展示了当前紫外线LED技术与传统技术的对比情况。该比较发现,在对细菌和病毒进行消毒时,紫外线LED的表现与传统紫外线技术相当。此外,本综述还探讨了在实验室规模、中试规模和全规模下,紫外线LED流通式反应器报告的等效减少通量的比较情况,发现LED处理在处理增加的流量方面变得更加有效,并且已被证明在全规模下可行。然而,紫外线LED确实需要进一步研究不同波长下水基质的影响以及每种可用LED波长对消毒的影响。总体而言,这项工作对紫外线消毒技术进行了广泛评估,并为那些有兴趣了解这一快速发展技术的人提供了一份最新的参考文件。