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Systematic Review ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 1 ? Systematic review or meta-analysis. Synthesizes findings across many studies. Strongest evidence. Remediation Sign in to save

Removal of most frequent microplastic types and sizes in secondary effluent using Al2(SO4)3: choosing variables by a fuzzy Delphi method

Scientific Reports 2023 8 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.
Nahid Azizi, Meghdad Pirsaheb Meghdad Pirsaheb Ramin Nabizadeh, Ramin Nabizadeh, Ramin Nabizadeh, Nahid Azizi, Nahid Azizi, Nahid Azizi, Meghdad Pirsaheb Meghdad Pirsaheb Nahid Azizi, Meghdad Pirsaheb Meghdad Pirsaheb Nematollah Jaafarzadeh Haghighi, Meghdad Pirsaheb Meghdad Pirsaheb Meghdad Pirsaheb Meghdad Pirsaheb Meghdad Pirsaheb Ramin Nabizadeh, Nematollah Jaafarzadeh Haghighi, Nahid Azizi, Ramin Nabizadeh, Ramin Nabizadeh, Nahid Azizi, Meghdad Pirsaheb Meghdad Pirsaheb Nahid Azizi, Ramin Nabizadeh, Meghdad Pirsaheb Meghdad Pirsaheb Nahid Azizi, Meghdad Pirsaheb Meghdad Pirsaheb Nahid Azizi, Nahid Azizi, Meghdad Pirsaheb

Summary

This study found that aluminum sulfate coagulation removed 72-99% of common microplastic types from secondary wastewater effluent, with removal efficiency varying by polymer type and particle size. Polyamide and polystyrene particles were removed most effectively, while polyethylene was more resistant, demonstrating that optimized coagulation can significantly reduce microplastic discharge from wastewater treatment plants.

Study Type Environmental

Microplastics (MPs) as an emerging pollutant can affect aquatic organisms through physical ingestion, chemical problems and possible creation of biological layers on their surfaces in the environment. One of the significant ways for MPs to enter the aquatic environment is through the effluent discharge of wastewater treatment plants (WWTPs). In this study, first, the concentration and characteristics of MPs in secondary wastewater effluent, and the influential variables related to the coagulation process, for MPs removal were identified using systematic reviews of previous studies. Then, the most proper MPs characterization and coagulation variables were chosen by experts' opinions using a fuzzy Delphi method. Therefore, the experiment tested in conditions close to the full-scale wastewater treatments. Finally, in the laboratory removal of MPs by coagulation of polyamide (PA), polystyrene (PS), and polyethylene (PE), < 125 and 300-600 μm in size, was tested by a jar test applying Al(SO) in doses of 5 to 100 mg/L plus 15 mg/L polyacrylamide as a coagulant aid. Using R and Excel software, the results were analyzed statistically. It was concluded that the maximum and minimum removal efficiency was 74.7 and 1.39% for small PA and large PE, respectively. Smaller MPs were found to have higher removal efficiency. The MPs type PA achieved greater removal efficiency than PS, while PE had the least removal efficiency.

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