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突尼斯干旱气候下垂直人工湿地污染物去除的季节性评估。

Seasonal evaluation of pollutant removal in a vertical constructed wetland in Tunisia's arid climate.

作者信息

Tlili Hiba, Bali Mahmoud, Boukchina Rachid

机构信息

Higher Institute of Water Sciences and Techniques, University of Gabès, Tunisia.

Institute of Arid Lands, Medenine, Tunisia.

出版信息

Int J Phytoremediation. 2025;27(11):1602-1617. doi: 10.1080/15226514.2025.2512172. Epub 2025 Jun 5.

Abstract

Intermittent planted filters are effective biological treatment systems designed to oxidize and purify urban wastewater at a low cost while minimizing environmental impacts. This study introduces a novel adaptation of vertical flow constructed wetlands (VFCWs) specifically tailored to the arid climate of southeastern Tunisia, with a focus on optimizing seasonal performance and addressing regional wastewater treatment challenges. By integrating a unique two-stage gravel-sand design, both stages of which are fed vertically, and leveraging solar-powered operations, this research offers valuable insights into the dynamics of pollutant and pathogen removal under extreme environmental conditions. Through a combination of laboratory and field experiments, the research demonstrated significant reductions in chemical oxygen demand, biochemical oxygen demand, ammonia-nitrogen, and ortho-phosphate, achieving removal efficiencies of 95.2%, 96.1%, 78.2%, and 100%, respectively. Notably, an increase in nitrate levels at the filter outlet suggests favorable nitrifying conditions that may enhance plant physiological growth. The treatment system also effectively removed 2, 1.56, and 1.18 log units of total coliforms, fecal coliforms, and fecal streptococci, respectively. Seasonal variations, particularly in air temperature and sunlight duration, significantly influenced pollutant removal rates, with higher efficiencies observed during the warmer summer and spring months, which promote both plant growth and microbial activity.

摘要

间歇式人工滤池是一种有效的生物处理系统,旨在以低成本氧化和净化城市废水,同时将环境影响降至最低。本研究介绍了一种新型的垂直流人工湿地(VFCW),专门针对突尼斯东南部的干旱气候进行了调整,重点是优化季节性性能并应对区域废水处理挑战。通过整合独特的两级砾石-沙子设计(两级均采用垂直进水)并利用太阳能运行,本研究为极端环境条件下污染物和病原体去除的动态过程提供了有价值的见解。通过实验室和现场实验相结合,研究表明化学需氧量、生化需氧量、氨氮和正磷酸盐显著降低,去除效率分别达到95.2%、96.1%、78.2%和100%。值得注意的是,滤池出口处硝酸盐水平的增加表明硝化条件良好,这可能会促进植物的生理生长。该处理系统还分别有效去除了2、1.56和1.18个对数单位的总大肠菌群、粪大肠菌群和粪链球菌。季节性变化,特别是气温和日照时长的变化,对污染物去除率有显著影响,在温暖的夏季和春季月份观察到更高的效率,这有利于植物生长和微生物活动。

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