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Effect of landfill age on the physical and chemical characteristics of waste plastics/microplastics in a waste landfill sites

Environmental Pollution 2022 109 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.
Fei Yu Jie Ma, Yizhi Pei, Yizhi Pei, Jie Ma, Yizhi Pei, Fei Yu Yizhi Pei, Fei Yu Fei Yu Fei Yu Fei Yu Fei Yu Fei Yu Fei Yu Jie Ma, Zhaoju Wu, Yizhi Pei, Fei Yu Yizhi Pei, Zhaoju Wu, Yizhi Pei, Yizhi Pei, Fei Yu Yizhi Pei, Jiayi Wang, Jiayi Wang, Yizhi Pei, Jiayi Wang, Fei Yu Fei Yu Fei Yu Jie Ma, Fei Yu Yiyao Li, Jiayi Wang, Jie Ma, Jie Ma, Jie Ma, Yizhi Pei, Fei Yu Fei Yu Jie Ma, Ruidan Chu, Fei Yu Jie Ma, Fei Yu Jie Ma, Yizhi Pei, Jie Ma, Ruidan Chu, Jie Ma, Fei Yu Fei Yu Fei Yu Jie Ma, Yizhi Pei, Jie Ma, Jie Ma, Yizhi Pei, Fei Yu Jie Ma, Jie Ma, Jie Ma, Jie Ma, Jie Ma, Jie Ma, Jie Ma, Jie Ma, Jie Ma, Fei Yu

Summary

Researchers examined how landfill age affects waste plastic degradation, finding that older landfills contained smaller, more fragmented microplastics with increased surface oxidation and crystallinity changes, revealing the progressive breakdown pathway of plastics in landfill environments.

Polymers

The landfills store a lot of waste plastics, thus it has been confirmed a main source for the occurrence of plastics/microplastic. Although there are some reports that microplastics (MPs) can generate in leachate and refuse samples from the landfill, it exist many blanks for the evolution of physical and chemical characteristics of waste plastics and microplastics with different landfill age. To explore the process that large pieces of plastic are fractured into microplastics, the waste plastics with landfill age from 7 to 30 years are surveyed from a typical landfill in Shanghai. The results show that PE and PP are the most common types of landfilling plastics, and their chemical composition also have changed due to the creation of CO and -OH. Moreover, the crystallinity is affected by plastic type and landfill age. The crystallinity of PP increased from 24.9% to 56.8%, but for PE, the crystallinity decreased from 55.6% to 20.8%. The mechanical properties of waste plastics were reduced significantly, which may be caused by changes in carbon-chain molecules. Al, Ti, Co, and other metal elements were detected on the plastic surface. The hydrophobic behavior of waste plastic is constantly decreasing (102.2°-80.1°) under long-term landfilling. By investigating the changes in the physical and chemical characteristics of waste plastics with different landfill age can shed light upon the process of environmental weathering of waste plastics. This provide theoretical guidance for reducing the transport of microplastics to the environment.

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