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臭氧氧化在水中去除药品和个人护理产品的应用。

Application of ozonation for pharmaceuticals and personal care products removal from water.

机构信息

CIEPQPF - Chemical Engineering Processes and Forest Products Research Center, GERST, Group on Environment, Reaction, Separation and Thermodynamics, Department of Chemical Engineering, Faculty of Sciences and Technology, University of Coimbra, Pólo II - Rua Sílvio Lima, 3030-790 Coimbra, Portugal.

CIEPQPF - Chemical Engineering Processes and Forest Products Research Center, GERST, Group on Environment, Reaction, Separation and Thermodynamics, Department of Chemical Engineering, Faculty of Sciences and Technology, University of Coimbra, Pólo II - Rua Sílvio Lima, 3030-790 Coimbra, Portugal.

出版信息

Sci Total Environ. 2017 May 15;586:265-283. doi: 10.1016/j.scitotenv.2017.01.216. Epub 2017 Feb 6.

Abstract

Due to the shortening on natural water resources, reclaimed wastewater will be an important water supply source. However, suitable technologies must be available to guaranty its proper detoxification with special concern for the emerging pharmaceutical and personal care products that are continuously reaching municipal wastewater treatment plants. While conventional biological systems are not suitable to remove these compounds, ozone, due to its interesting features involving molecular ozone oxidation and the possibility of generating unselective hydroxyl radicals, has a wider range of action on micropollutants removal and water disinfection. This paper aims to review the studies dealing with ozone based processes for water reuse by considering municipal wastewater reclamation as well as natural and drinking water treatment. A comparison with alternative technologies is given. The main drawback of ozonation is related with the low mineralization achieved that may lead to the production of reaction intermediates with toxic features. The use of hydrogen peroxide and light aided systems enhance ozone action over pollutants. Moreover, scientific community is focused on the development of solid catalysts able to improve the mineralization level achieved by ozone. Special interest is now being given to solar light catalytic ozonation systems with interesting results both for chemical and biological contaminants abatement. Nowadays the integration between ozonation and sand biofiltration seems to be the most interesting cost effective methodology for water treatment. However, further studies must be performed to optimize this system by understanding the biofiltration mechanisms.

摘要

由于自然资源的短缺,再生废水将成为重要的水资源。然而,必须采用合适的技术来保证其适当的净化,特别要关注那些不断进入城市污水处理厂的新兴药物和个人护理产品。虽然传统的生物系统不适合去除这些化合物,但臭氧由于其具有分子臭氧氧化的特点和生成非选择性羟基自由基的可能性,在去除微污染物和水消毒方面具有更广泛的作用。本文旨在通过考虑城市废水回收以及天然和饮用水处理,综述基于臭氧的水再利用工艺的研究。并与替代技术进行了比较。臭氧处理的主要缺点与所达到的低矿化度有关,这可能导致具有毒性特征的反应中间体的产生。过氧化氢和光辅助系统的使用增强了臭氧对污染物的作用。此外,科学界专注于开发能够提高臭氧达到的矿化水平的固体催化剂。现在人们对太阳能光催化臭氧氧化系统特别感兴趣,该系统在化学和生物污染物的去除方面都取得了有趣的结果。如今,臭氧氧化与砂生物过滤的结合似乎是水处理最具成本效益的方法。然而,必须进一步研究通过了解生物过滤机制来优化该系统。

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