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Our results were helpful for understanding the removal processes of pfaas in constructed wetlands and their linkages with pfaa properties, thus further providing insight into the management and removal of emerging organic contaminants. Hazardous perfluoroalkyl acids (pfaas), particularly perfluorooctane sulfonate (pfos) and perfluorooctanoate (pfoa), have become ubiquitous environmental persistent organic contaminants, posing serious threats to environmental health, which has led to the development of pfaa treatment methods. The possible removal processes of pfaas in constructed wetlands were excavated and quantified using two typical submerged macrophytes (rooted potamogeton wrightii and rootless.
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This study is useful to understand the removal of pfaas during the decomposition process, providing further assistance in removing pfaas during the life cycle of macrophytes in wetlands. This study provides comprehensive information on the removal of pfaas in the decomposition process of emergent macrophytes in wetlands by clarifying their removal efficiency, exploring possible removal pathways, and profiling the dynamic succession of biofilm microbial communities at different pfaa pressures. This review critically evaluates current.
Using a controlled greenhouse exposure setting, we investigated the bioaccumulation and translocation of select pfas in four common urban spontaneous plants.