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Microplastics in an advanced wastewater treatment plant: sustained and robust removal rates unfazed by seasonal variations

Microplastics and Nanoplastics 2024 14 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Jes Vollertsen Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Konstantinos Papacharalampos, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Konstantinos Papacharalampos, Lucian Iordachescu, Lauriane Barritaud, Konstantinos Papacharalampos, Lauriane Barritaud, Konstantinos Papacharalampos, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Lauriane Barritaud, Marie‐Pierre Denieul, Lauriane Barritaud, Jes Vollertsen Jes Vollertsen Jes Vollertsen Lucian Iordachescu, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Lucian Iordachescu, Jes Vollertsen Jes Vollertsen Lucian Iordachescu, Jes Vollertsen Lucian Iordachescu, Lucian Iordachescu, Emmanuel Plessis, Jes Vollertsen Jes Vollertsen Lucian Iordachescu, Jes Vollertsen Jes Vollertsen Jes Vollertsen Lucian Iordachescu, Jes Vollertsen Jes Vollertsen Marie‐Pierre Denieul, Marie‐Pierre Denieul, Emmanuel Plessis, Jes Vollertsen Jes Vollertsen Konstantinos Papacharalampos, Jes Vollertsen Emmanuel Plessis, Jes Vollertsen Jes Vollertsen Konstantinos Papacharalampos, Konstantinos Papacharalampos, Jes Vollertsen Konstantinos Papacharalampos, Konstantinos Papacharalampos, Jes Vollertsen Konstantinos Papacharalampos, Jes Vollertsen Gilles Baratto, Emmanuel Plessis, Konstantinos Papacharalampos, Gilles Baratto, Jes Vollertsen Konstantinos Papacharalampos, Jes Vollertsen Jes Vollertsen Marie‐Pierre Denieul, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Veronique Julien, Gilles Baratto, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Gilles Baratto, Jes Vollertsen Veronique Julien, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Veronique Julien, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Veronique Julien, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen

Summary

Researchers evaluated microplastic removal at an advanced wastewater treatment plant discharging into the Mediterranean Sea across three seasonal campaigns. The plant achieved removal rates above 99% consistently, with efficiency remaining robust even during rainy and high-tourism periods. The study found that primary treatment stages, particularly coagulation and settling, were most effective at capturing microplastics, with polyester being the predominant polymer type detected.

Study Type Environmental

Microplastics (MP), fragments of plastic generally defined as, less than 5 mm in size, originating from various urban sources, have become a significant environmental concern due to their widespread presence and potential impacts on ecosystems. This study investigates the efficiency of an advanced wastewater treatment plant discharging into the Mediterranean Sea in removing MPs from wastewater. The plant processes wastewater through a series of treatment stages, including screening, desanding, coagulation/flocculation, biological filtration, and sludge incineration. Samples were collected and analysed during three distinct campaigns (dry, rainy, and touristic seasons) to assess the plant’s performance under varying conditions. Using matrix-representative sampling methodologies and Focal Plane Array micro Fourier-Transform Infrared Spectroscopy (FPA-µFT-IR) for MP quantification, the study measured MP concentrations and removal rates. The treatment plant demonstrated high removal rates of microplastics across different periods. Using a mass balance approach, the removal efficiency during the dry sampling period was 99.85%. In the rainy campaign, the efficiency slightly decreased to 99.11% due to increased runoff, while during the touristic period, the efficiency peaked at 99.95%. Polyester was identified as the predominant polymer type. The primary treatment stages, particularly coagulation/flocculation and lamellar settling, are most effective in MP removal. The majority of MPs are retained in the sludge, which is subsequently incinerated, preventing environmental discharge. This research demonstrates that a WWTP employing advanced treatment processes is not a source of MP to the environment but rather a sink. Despite variations in influent MP concentrations across different seasons, the plant consistently maintained high removal rates, effectively mitigating MP pollution. In this study, sludge incineration further ensured that MPs were prevented from entering the environment.

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