0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Sign in to save

Global perspective on microplastics in landfill leachate; Occurrence, abundance, characteristics, and environmental impact

Waste Management 2023 33 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 60 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Meththika Vithanage Meththika Vithanage Hasintha Wijesekara, Gayathri Chamanee, Gayathri Chamanee, Gayathri Chamanee, Gayathri Chamanee, Madushika Sewwandi, Madushika Sewwandi, Meththika Vithanage Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Hasintha Wijesekara, Hasintha Wijesekara, Hasintha Wijesekara, Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Madushika Sewwandi, Meththika Vithanage Meththika Vithanage Hasintha Wijesekara, Hasintha Wijesekara, Hasintha Wijesekara, Hasintha Wijesekara, Hasintha Wijesekara, Meththika Vithanage Meththika Vithanage Meththika Vithanage Hasintha Wijesekara, Hasintha Wijesekara, Hasintha Wijesekara, Madushika Sewwandi, Hasintha Wijesekara, Madushika Sewwandi, Hasintha Wijesekara, Hasintha Wijesekara, Hasintha Wijesekara, Hasintha Wijesekara, Hasintha Wijesekara, Hasintha Wijesekara, Madushika Sewwandi, Hasintha Wijesekara, Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Hasintha Wijesekara, Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Hasintha Wijesekara, Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Hasintha Wijesekara, Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Meththika Vithanage Gayathri Chamanee, Gayathri Chamanee, Meththika Vithanage Meththika Vithanage Meththika Vithanage

Summary

This review provides the first global overview of microplastic contamination in landfill leachate, the liquid that seeps out of garbage dumps. Microplastic levels varied widely, with the highest concentrations found in Shanghai at 291 particles per liter, and polyethylene was the most common type worldwide. Since landfill leachate can seep into groundwater and nearby waterways, this represents an important but often overlooked source of microplastic pollution that could affect drinking water supplies.

Polymers
Models

Plastic wastes deposited in landfills eventually break down and degrade into microplastics by physical, chemical, and biological forces. Though microplastics in leachate pose significant threats to the environment, the leachate generated from landfills has not received much attention as a possible source of environmental microplastics. A descriptive and systematic investigationof the global distribution of microplastics in landfill leachate does not exist to date. Therefore, this attempt is to provide a concise scientometric review of the studies on the presence of microplastics in landfill leachate. The present review revealed that the global trend in research on microplastics in leachate has increased exponentially after 2018 and China is the leading country. Different geographical regions have reported different microplastic abundances with the highest of 291.0 ± 91.0 items/L from a landfill in Shanghai. The use of novel sampling techniques to detect small microplastics (20-100 µm) has led to the high abundance of microplastics in landfill leachate in Shanghai. Due to its widespread usage, polyethylene is the most typically encountered polymer type in landfill leachate around the world. However, it is quite challengingto compare the results among studies due to the use of different size categories and extraction techniques. The removal of microplastics by the current leachate treatment facilities is still mostly unexplored, thus it is crucial to develop novel technologies to treat the microplastics in landfill leachate. Further investigations on the transport of microplastics in landfill leachate are urgently required to have a better understanding of potential human exposure and health implications.

Sign in to start a discussion.

Share this paper