泻湖能否作为污水处理厂微污染物的四级处理?遵守新城市污水处理指令的最新影响

Lissette Díaz-Gamboa, Sofía Martínez-López, Luis Miguel Ayuso-García, A. Lahora, Isabel Martínez-Alcalá
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摘要

本研究探讨了贮存池作为污水处理厂(WWTPs)四级处理步骤的潜力,重点关注是否符合最新的欧洲城市污水处理指令(UWWTD),该指令要求将特定微污染物减少 80%。虽然传统的处理方法能有效去除残留的营养物质和固体物质,但贮存池作为附加处理方法的潜力尚未完全确定。本研究旨在通过评估储水池在改善卡贝佐-贝萨污水处理厂出水水质方面的功效来弥补这一不足,同时考虑到水处理技术发展联盟的最新要求。我们对卡贝佐贝亚扎污水处理厂在蓄水湖阶段前后的水质参数和微污染物进行了全面评估。结果表明,这种在泻湖中长期储存的策略能够达到指令规定的减排目标,对大部分分析微污染物的去除率超过 80%。我们的研究结果表明,泻湖可以显著改善水质,减少污染物,其效果超过传统处理方法,具有环境和经济效益。本文讨论了这些改善背后的机制,如自然沉淀、微生物活动和潜在的植物修复。这项研究为先进废水处理研究做出了贡献,并支持将储存池作为一种可行的四级处理解决方案,以满足 UWWTD 标准。
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Can Lagoons Serve as a Quaternary Treatment for Micropollutants in Wastewater Treatment Plants? Recent Implications for Compliance with the New Urban Wastewater Treatment Directive
This study explores the potential of storage lagoons as a quaternary treatment step in wastewater treatment plants (WWTPs), focusing on compliance with the recent European Urban Wastewater Treatment Directive (UWWTD), which mandates an 80% reduction in specific micropollutants. While conventional treatments effectively remove residual nutrients and solids, the potential of storage lagoons as an additional treatment is not fully defined. This research aims to address this gap by assessing the efficacy of storage lagoons in refining the effluent quality at the Cabezo Beaza WWTP, considering recent UWWTD requirements. We conduct a comprehensive assessment of the water quality parameters and micropollutants, before and after the storage lagoon stage, at the Cabezo Beaza WWTP. The results indicate that this strategy of prolonged storage in lagoons manages to meet the reduction objectives established by the Directive, reaching elimination percentages greater than 80% for the majority of the analyzed micropollutants. Our findings suggest that lagoons significantly improve water quality and reduce contaminants beyond conventional treatments, offering environmental and economic benefits. This paper discusses the mechanisms behind these improvements, such as natural sedimentation, microbial activity, and potential phytoremediation. This study contributes to the research on advanced wastewater treatment and supports the integration of storage lagoons as a viable quaternary treatment solution that meets the UWWTD standards.
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