日益受到关注的污染物

Mateus Pereira Caixeta
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引用次数: 3

摘要

水生生态系统中的紧急关注污染物(CECs)由于其在长期暴露期间的持续行为和对生物的不利影响,即使在残留浓度下也会对环境造成潜在风险。传统的污水处理厂(WWTPs)的设计不适合消除CECs,因为处理技术不足以去除这些污染物,这产生了环境和技术挑战。本文就CEC对水生环境的污染来源进行了详细的讨论。了解CECs的发生和途径、对环境的不利影响以及清除技术是正确维护全球生态健康的重要关键。通过cec对环境的有害影响,包括其毒性作用和允许限度,对这种情况进行了更多的探讨。本综述从全球角度收集了有关CECs发生的信息,汇编了有关其生态毒理学效应、缓解CECs的常规和先进治疗方法的信息。先进的混合处理技术,如膜生物反应器与臭氧化、反渗透和超滤已被证明是一个有前途的替代CECs去除。采用辅助和非辅助UVC/H2O2系统进行TiO2光催化的新型高级氧化工艺也被证明是在CECs缓解策略中实施的好方法。
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Contaminants of Emerging Concern
Contaminants of emergent concern (CECs) in aquatic ecosystems entail a potential risk for the environment, due to their persistent behavior and adverse effect on living organisms during a long-term exposition, even at residual concentrations. Conventional Wastewater Treatment Plants (WWTPs) are not designed to eliminate CECs properly because the treatment technologies are not enough to remove these contaminants, which generates environmental and technological challenges. In this review, the sources of CEC contaminants to aquatic environments have been discussed in detail. Understanding the occurrences and pathways of CECs, their adverse effects on the environment, and removal techniques is a valuable key for the proper maintenance of global ecological health. This scenario was more explored through the harmful impacts of CECs on the environment, including their toxic effects and permissible limits. This review gathers information about CECs occurrences from a global perspective compiling information about their ecotoxicological effects, conventional and advanced treatment methods towards their mitigation. Advanced hybrid treatment techniques such as membrane bioreactor with ozonation, reverse osmosis, and ultrafiltration have shown to be a promising alternative for CECs removal. New advanced oxidation processes with assisted and non-assisted UVC/H2O2 systems with TiO2 photocatalysis were also demonstrated as a good approach to be implemented in the CECs mitigation strategies.
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来源期刊
U.Porto Journal of Engineering
U.Porto Journal of Engineering Engineering-Engineering (all)
CiteScore
0.70
自引率
0.00%
发文量
58
审稿时长
20 weeks
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