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April 23, 2026Sustainability1 citationsOpen Access

A Critical Review on the Landfill Plastisphere: Coupling Microplastics and Greenhouse Gases Towards Smart Low-Carbon Management

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JLJunnan LiPLPeng LiXGXu Guo

Key Points

  • To analyze the interactions between microplastics and greenhouse gases in landfills, highlighting their environmental implications.
  • Reviewed mechanical, chemical, and biological pathways of plastic degradation.
  • Assessed occurrence and removal efficiency of microplastics in landfill leachate.
  • Proposed a theoretical framework for evaluating biogeochemical interactions.
  • Identified landfill plastisphere as a significant contributor to greenhouse gas emissions.
  • Outlined a low-carbon framework to optimize landfill operations and reduce environmental impact.

Abstract

Landfills are complex repositories where macroplastics degrade into MPs. This review examines mechanical, chemical, and biological pathways of plastic fragmentation, as well as the occurrence, characteristics, and removal efficiency of MPs in landfill leachate. We also explore the landfill plastisphere from the perspective of this complex matrix, considering how plastic surfaces and microbial life may potentially converge to form a key biogeochemical interface that could influence carbon and nitrogen transformations The plastisphere’s complex surface structure drives microbial differentiation. Given its established links to GHG production in soil and water, we propose it likely represents a key contributor to GHG emissions in the more complex landfill environment. To bridge this conceptual gap, we review a mathematical scaffolding encompassing biofilm growth, polymer degradation kinetics, and gas flux, which can as a theoretical baseline requiring future in situ parameterization to evaluate plastisphere-driven biogeochemical interactions. Building on recent advances in monitoring and remote sensing technologies, including IOT networks, UAV imagery, and AI analysis, we outline a low-carbon landfill framework designed to optimize operational controls. This framework is described to simultaneously mitigate MP release and reduce GHG emissions, lowering carbon footprints. Amid surging plastic pollutants, this review underscores the necessity of holistic, integrated mitigation strategies.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69e9b9e385696592c86ec4d9https://doi.org/10.3390/su18084134
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