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Dynamic fluctuations in plant leaf interception of airborne microplastics

The Science of The Total Environment 2023 28 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Jiao Meng, Yijin Wang, Fei Yang, Zhen Zhao, Yihua Wei, Ruilong Li, Yinghui Wang

Summary

A 7-day field experiment measuring plant leaf interception of airborne microplastics found that leaf MP loads fluctuate dynamically due to deposition and re-suspension processes, challenging the use of static accumulation models for estimating MP interception by vegetation.

Plant leaves have been demonstrated to be a crucial sink of airborne microplastics (MPs). However, because of the particular shape of MPs and their relatively weak forces with leaves, the traditional accumulation model used for the adsorption of particulate matter and persistent organic pollutants may not be appropriate for describing the interception of MPs by leaves. Here, we performed a 7-day exploration of the interception of MPs by leaves in downtown Nanning. The abundances and characteristics of leaf-intercepted MPs showed dramatic diurnal fluctuations and interspecies differences (conifers > arbors > shrubs). The fluctuation (Coefficient of Variation (CV) = 0.459; abundances 0.003 ± 0.002 to 0.047 ± 0.005 n·cm) was even more drastic than that measured across species (CV = 0.353; 0.06 ± 0.01 to 0.40 ± 0.04 n·cm). Further analysis using partial least-squares path modeling demonstrated that stomatal variation and divergence largely dominated diurnal fluctuations and interspecies differences in microplastic interception by leaves, respectively. Our results highlight that the leaf-intercepted MPs is characterized by dynamic fluctuations rather than static equilibrium and reveal the important regulatory roles played by leaf micromorphological structures in intercepting MPs, thus enhancing our understanding of the interactions between terrestrial plants and airborne pollution.

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