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开发并建立一种新型的外部紫外线(UV)反射器光反应器,用于水处理应用。

Development and modeling of a novel type of photoreactors with exterior ultraviolet (UV) reflector for water treatment applications.

机构信息

School of Mechanical Engineering, College of Engineering, University of Tehran, Tehran, Iran.

出版信息

Sci Rep. 2023 May 11;13(1):7696. doi: 10.1038/s41598-023-34799-0.

Abstract

Ultraviolet (UV) water disinfection method has emerged as an alternative to chemical methods of disinfection. In typical UV photoreactors for water treatment, water flows in the space between the lamp's sleeve and outer shell. The contact of water and sleeve causes fouling, which reduces the effectiveness of UV. To clean the photoreactor, the quartz sleeve must be replaced; this may lead to quartz or lamp breakage and mercury leakage into water during cleaning. In this study, a novel type of multi-lamp UV photoreactors is proposed, in which the UV lamps are placed out of the water channel and their UV irradiation is redirected into the channel using an outer cylindrical reflector. This allows for the installment of a self-cleaning mechanism for the water channel. A well-validated three-dimensional CFD model is utilized to model the performance of this photoreactor for microbial inactivation. The impacts of several geometrical and optical parameters are investigated on the inactivation of microorganisms. The results revealed that the difference in log reduction values (LRV) between fully specular and fully diffuse reflector ranges from 10 to 47% as the lamp-to-channel distance increases. For the volumetric flow rate of 25 GPM, the LRV of a photoreactor with fully diffuse reflector can be 46% higher than a fully specular one. In addition, the performance of the proposed photoreactor is compared against a classic L-shaped annular photoreactor. The results show that the new design can provide equal or better microbial performance compared to the classic photoreactor, but it removes many of their common issues such as quartz fouling, lamp overheating at low flow rates, and sleeve breakage during lamp replacement.

摘要

紫外线(UV)水消毒方法已成为化学消毒方法的替代方法。在典型的水处理 UV 光反应器中,水流经灯套管和外壳之间的空间。水与套管的接触会导致结垢,从而降低 UV 的效果。为了清洁光反应器,必须更换石英套管;这可能导致石英或灯管在清洁过程中破裂,以及汞泄漏到水中。在这项研究中,提出了一种新型多灯 UV 光反应器,其中 UV 灯放置在水通道之外,并使用外圆柱形反射器将其 UV 辐射重新引导到通道中。这允许为水通道安装自清洁机制。利用经过良好验证的三维 CFD 模型来模拟该光反应器的微生物灭活性能。研究了几种几何和光学参数对微生物灭活的影响。结果表明,随着灯到通道距离的增加,全反射和全漫反射反射器之间的对数减少值(LRV)差异在 10%到 47%之间。对于 25 GPM 的体积流量,具有全漫反射器的光反应器的 LRV 可以比全反射器高 46%。此外,还将所提出的光反应器的性能与经典 L 形环形光反应器进行了比较。结果表明,新设计可以提供与经典光反应器相等或更好的微生物性能,但它消除了许多常见问题,如石英结垢、低流速下灯过热以及更换灯管时套管破裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb3d/10175273/bbfb7329dde1/41598_2023_34799_Fig1_HTML.jpg

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