4.6 Review

Fate and Removal of Microplastics from Industrial Wastewaters

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Summary: Microplastics, particularly microfibers, have become a critical environmental pollution issue attracting attention from various countries. This research systematically reviews the contamination of microfibers through bibliometric analysis. It analyzes the primary sources and influencing factors of microfibers, summarizes the impact of fiber preparation and care processes on microfiber formation, discusses their migration in different environments, and explores their effects on ecosystems. Additionally, current and foreseeable effective treatment, disposal, and resource utilization methods for microfibers are explained.

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Potential of Advanced Oxidation as Pretreatment for Microplastics Biodegradation

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Summary: Microplastics have become recognized as an emerging environmental pollutant in the past two decades. Their small size allows them to enter the food chain easily, leading to adverse effects on organisms and the environment. Biodegradation is the most environmentally friendly and economically acceptable method, but it has drawbacks such as low removal rate and efficiency. Therefore, pretreatment with advanced oxidation processes (AOPs) can enhance the biodegradation of microplastics.

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Removing microplastics from aquatic environments: A critical review

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Distribution of microplastics in the sludge of wastewater treatment plants in chengdu, China

Feng Wei et al.

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The aging behaviors and release of microplastics: A review

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Summary: This review summarizes recent literature on the natural and artificial aging process of microplastics (MPs), discusses their aging characteristics and mechanisms, and evaluates the release of MPs during the aging process. It also highlights the different properties and toxic effects of aged MPs compared to pristine MPs. The potential risks associated with aging MPs and their environmental release are thoroughly examined.

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Unravelling capability of municipal wastewater treatment plant in Thailand for microplastics: Effects of seasonality on detection, fate and transport

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Summary: The study shows that seasonality has significant impacts on the fate and transport of microplastics in aquatic environments. Different types and quantities of microplastics were observed at a wastewater treatment plant in Thailand during dry and wet seasons. Furthermore, the distribution and concentration of microplastics varied between dry and wet seasons.

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ADVANCED SCIENCE (2022)

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Long-Term Occurrence and Fate of Microplastics in WWTPs: A Case Study in Southwest Europe

Andrea Menendez-Manjon et al.

Summary: This study analyzes the performance and annual occurrence of microplastics (MPs) in a wastewater treatment plant in Southwest Europe. The results show that the removal efficiency of MPs during the treatment process is very high and remains consistent throughout the year. The majority of MPs found in wastewater and sludge samples are fragments and fibers, with polyethylene, polyethylene terephthalate, and polypropylene being the dominant polymers.

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Liling Zhou et al.

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Microplastics removal and characteristics of constructed wetlands WWTPs in rural area of Changsha, China: A different situation from urban WWTPs

Yuannan Long et al.

Summary: This study systematically investigated the removal efficiency and characteristics of microplastics in two rural wastewater treatment plants in Changsha city, China, and compared the microplastic pollution data of urban and rural wastewater treatment plants, providing some advice for improving the microplastics removal efficiencies in rural wastewater treatment plants.

SCIENCE OF THE TOTAL ENVIRONMENT (2022)

Article Biotechnology & Applied Microbiology

Distribution and occurrence of microplastics in wastewater treatment plants

Manh Van Do et al.

Summary: This study investigated the distribution and occurrence of microplastics (MPs) in three industrial wastewater treatment plants in Danang city, Vietnam. The results showed that the efficiency of MPs removal in these plants was low, with a significant amount of MPs being discharged into the environment daily. The study also identified the size, shape, color, and chemical compositions of the MPs.

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Fate of microplastics in the drinking water production

Patrick S. Bauerlein et al.

Summary: Drinking water treatment can effectively remove most microplastics, and the concentration of microplastics in tap water is relatively low. Groundwater has significantly lower microplastic concentrations compared to other water sources. Polyamide, polyethylene terephthalate, and other plastics are the most common types of microplastics. Natural treatment steps such as dune filtration and sedimentation can effectively remove microplastics.

WATER RESEARCH (2022)

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WATER RESEARCH (2022)

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Coagulation and Flocculation before Primary Clarification as Efficient Solutions for Low-Density Microplastic Removal from Wastewater

Piotr Jachimowicz et al.

Summary: This study investigated the removal of microplastics from wastewater using different types and doses of coagulants and flocculants. The results showed that the removal efficiency of microplastics varied depending on the type and dose of coagulant or flocculant used, and the addition of some flocculants may have a negative impact on the composition of the wastewater.

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The fate of microplastics in wastewater treatment plants: An overview of source and remediation technologies

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Summary: This review provides comprehensive knowledge about the source, composition, treatment units, and remediation methods of microplastics and nanoplastics in wastewater treatment plants. The study suggests that wastewater treatment plants can separate over 90% of microplastics, but the large discharge volumes still contribute to environmental pollution. Advanced wastewater treatment technologies are discussed for their efficacy in remediating microplastics.

ENVIRONMENTAL TECHNOLOGY & INNOVATION (2022)

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Environmental source, fate, and toxicity of microplastics

Chunhui Wang et al.

Summary: Microplastics, small plastic particles less than 5 mm in size, have attracted increasing global attention due to their widespread distribution in various environmental compartments. Studies show that the sources of microplastics are diverse, and their presence and impacts in the environment are influenced by multiple factors. Research gaps exist in quantitatively analyzing different exposure routes of microplastics and their toxicity to organisms. Further efforts are needed to focus on the occurrence and fate of microplastics in terrestrial environments, especially in the atmosphere and soil, as well as investigating the toxicity mechanisms of microplastics.

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A review of the removal of microplastics in global wastewater treatment plants: Characteristics and mechanisms

Weiyi Liu et al.

Summary: This study reviewed the abundance and removal of microplastics in 38 wastewater treatment plants worldwide and found different characteristics of microplastics in different treatment technologies. The research revealed that filter-based treatment technologies showed the best removal efficiency for microplastics, and different types and sizes of microplastics were removed in different ways in various treatment processes.

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Microplastics fouling and interaction with polymeric membranes: A review

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Removal of polystyrene and polyethylene microplastics using PAC and FeCl3 coagulation: Performance and mechanism

Guanyu Zhou et al.

Summary: This study investigated the removal performance of PS and PE microplastics using PAC and FeCl3 coagulants. Results showed that PAC was more effective than FeCl3, especially in alkaline conditions. Adsorption and complexation were the main removal mechanisms, with the formation of new bonds enhancing the efficiency.

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Yu-Xiao Cheng et al.

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WATER RESEARCH (2021)

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Conversion and removal strategies for microplastics in wastewater treatment plants and landfills

Liyuan Hou et al.

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Microplastics in the environment: Sampling, pretreatment, analysis and occurrence based on current and newly-exploited chromatographic approaches

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Microplastics in Wastewater and Drinking Water Treatment Plants: Occurrence and Removal of Microfibres

Daniel Sol et al.

Summary: The research indicates that the efficiency of removing MPs, particularly MPFs, in WWTPs and DWTPs exceeds 70%, yet there still remains a significant amount of microfibres present in treated water.

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A review on the characteristics of microplastics in wastewater treatment plants: A source for toxic chemicals

Amir Hossein Hamidian et al.

Summary: Wastewater treatment plants are a significant source of microplastics discharged into the environment, with their characteristics in different environmental matrices still largely unknown. Most microplastics in water samples are composed of PET, PS, PP, and PE, with a significant proportion being removed during primary and secondary treatment stages, and MBR being the most efficient tertiary treatment technology. The majority of microplastics removed during wastewater treatment end up in sewage sludge and are released into the environment via sludge applications.

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Occurrence and removal of microplastics from wastewater treatment plants in a typical tourist city in China

Lishan Zhang et al.

Summary: The study found that microplastic content decreased significantly during the treatment process in wastewater treatment plants (WWTPs), but still widely existed in influent, effluent, and sludge. Fibers were the predominant type of microplastics, and the tertiary industry was identified as the main contributor of microplastics to WWTPs.

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Environmental fate and impacts of microplastics in aquatic ecosystems: a review

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