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May 27, 2026Microplastics0 citationsOpen Access

Microplastics as Source or Sink of Potentially Toxic Elements: Dynamics in the Soil–Plant System

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IAIgnazio AllegrettaCGConcetta Eliana GattulloMKMohammad Yaghoubi Khanghahi

Key Points

  • This review aims to elucidate the complex interactions between microplastics and potentially toxic elements in the soil ecosystem.
  • Critically analyzes existing literature on microplastics and their role in soil dynamics.
  • Focuses on the mechanisms of microplastic interactions with potentially toxic elements.
  • Evaluates conditions under which microplastics act as sources or sinks of contaminants.
  • Microplastics can adsorb potentially toxic elements, reducing their mobility and availability.
  • Degradation of microplastics may lead to the release and mobilization of potentially toxic elements.
  • Microplastics can act as vectors for potentially toxic elements, increasing environmental risk in contaminated soils.

Abstract

Soils are increasingly affected by microplastic (MP) contamination, mainly coming from industrial activities, agricultural practices, atmospheric or waterborne transport, and improper waste disposal. Despite the increasing attention to the fate of MPs in soil over the last few years, research in this area is still limited compared to aquatic ecosystems. The introduction of MPs into the soil environment can modify not only the soil properties but also the interactions among soil components, plants, and microorganisms, thus affecting the mobility and availability of other contaminants, such as potentially toxic elements (PTEs). This review critically examines the complex dynamics between MPs and PTEs in the soil ecosystem, with a focus on the conditions under which MPs can act as a source or a sink of PTEs. Indeed, on the one hand, MPs can adsorb or complex PTEs on their surfaces (similarly to natural soil colloids), thus reducing their mobility and availability; on the other hand, they can release/mobilize PTEs after MP degradation or act as micro-/nano-vectors of PTEs. Understanding such mechanisms is relevant when evaluating the environmental risks associated with the co-presence of MPs and PTEs in soil, a situation likely to occur in most contaminated sites and in many agricultural soils.

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Cite This Study

Allegretta et al. (2026) studied this question.

synapsesocial.com/papers/6a168b280c924ddd1bd5a016https://doi.org/10.3390/microplastics5020096
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