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基于紫外线的废水处理在循环经济视角下的再利用。我们现在处于什么阶段?

Disinfection of Wastewater by UV-Based Treatment for Reuse in a Circular Economy Perspective. Where Are We at?

机构信息

Department of Civil Engineering and Architecture, University of Pavia, via Ferrata 3, 27100 Pavia, Italy.

Interdepartmental Centre for Water Research, University of Pavia, via Ferrata 3, 27100 Pavia, Italy.

出版信息

Int J Environ Res Public Health. 2020 Dec 24;18(1):77. doi: 10.3390/ijerph18010077.

Abstract

Among the critical issues that prevent the reuse of wastewater treatment plants (WWTPs) effluents in a circular economy perspective, the microbiological component plays a key role causing infections and diseases. To date, the use of conventional chemical oxidants (e.g., chlorine) represent the main applied process for wastewater (WW) disinfection following a series of operational advantages. However, toxicity linked to the production of highly dangerous disinfection by-products (DBPs) has been widely demonstrated. Therefore, in recent years, there is an increasing attention to implement sustainable processes, which can simultaneously guarantee the microbiological quality of the WWs treated and the protection of both humans and the environment. This review focuses on treatments based on ultraviolet radiation (UV) alone or in combination with other processes (sonophotolysis, photocatalysis and photoelectrocatalysis with both natural and artificial light) without the dosage of chemical oxidants. The strengths of these technologies and the most significant critical issues are reported. To date, the use of synthetic waters in laboratory tests despite real waters, the capital and operative costs and the limited, or absent, experience of full-scale plant management (especially for UV-based combined processes) represent the main limits to their application on a larger scale. Although further in-depth studies are required to ensure full applicability of UV-based combined processes in WWTPs for reuse of their purified effluents, excellent prospects are presented thanks to an absent environmental impact in terms of DBPs formation and excellent disinfection yields of microorganisms (in most cases higher than 3-log reduction).

摘要

在阻碍废水处理厂(WWTP)出水在循环经济视角下再利用的关键问题中,微生物成分起着关键作用,会导致感染和疾病。迄今为止,使用常规化学氧化剂(例如氯)代表了用于废水(WW)消毒的主要应用工艺,这是因为其具有一系列操作优势。然而,与高危险消毒副产物(DBP)生产相关的毒性已得到广泛证明。因此,近年来,人们越来越关注实施可持续工艺,这些工艺可以同时保证处理后的 WW 的微生物质量以及人类和环境的保护。本文综述了单独使用紫外线(UV)或与其他工艺(声光解、光催化和光电催化,包括自然光和人工光)结合使用,而不投加化学氧化剂的处理方法。报道了这些技术的优势和最显著的关键问题。迄今为止,尽管在实验室测试中使用了合成水,但在实际应用中,资本和运营成本以及缺乏全规模工厂管理经验(尤其是对于基于 UV 的组合工艺),限制了这些技术在更大规模上的应用。尽管需要进一步深入研究以确保基于 UV 的组合工艺在 WWTP 中对其净化出水的完全适用性,但由于不存在 DBP 形成的环境影响以及对微生物的出色消毒效果(在大多数情况下,减少 3 个对数级以上),这些技术具有很好的应用前景。

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