Article
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Tier 2
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Original research — experimental, observational, or case-control study. Direct primary evidence.
Environmental Sources
Marine & Wildlife
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Polyester microplastic fibers affect soil physical properties and erosion as a function of soil type
SOIL2022
73 citations
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Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Score: 45
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0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Rosolino Ingraffia,
Rosolino Ingraffia,
Dario Giambalvo,
Anika Lehmann,
Rosolino Ingraffia,
Rosolino Ingraffia,
Rosolino Ingraffia,
Matthias C. Rillig
Anika Lehmann,
Anika Lehmann,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Rosolino Ingraffia,
Rosolino Ingraffia,
Matthias C. Rillig
Rosolino Ingraffia,
Matthias C. Rillig
Rosolino Ingraffia,
Anika Lehmann,
Matthias C. Rillig
Rosolino Ingraffia,
Matthias C. Rillig
Anika Lehmann,
Rosolino Ingraffia,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Gaetano Amato,
Gaetano Amato,
Gaetano Amato,
Rosolino Ingraffia,
Rosolino Ingraffia,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Gaetano Amato,
Gaetano Amato,
Gaetano Amato,
Gaetano Amato,
Gaetano Amato,
Gaetano Amato,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Rosolino Ingraffia,
Matthias C. Rillig
Massimo Iovino,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Anika Lehmann,
Vincenzo Bagarello,
Vincenzo Bagarello,
Vincenzo Bagarello,
Vincenzo Bagarello,
Vincenzo Bagarello,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Anika Lehmann,
Matthias C. Rillig
Francesco Giuseppe Carollo,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Francesco Giuseppe Carollo,
Matthias C. Rillig
Dario Giambalvo,
Matthias C. Rillig
Dario Giambalvo,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Anika Lehmann,
Matthias C. Rillig
Francesco Giuseppe Carollo,
Matthias C. Rillig
Francesco Giuseppe Carollo,
Matthias C. Rillig
Alfonso Salvatore Frenda,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Francesco Giuseppe Carollo,
Matthias C. Rillig
Matthias C. Rillig
Dario Giambalvo,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Dario Giambalvo,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Anika Lehmann,
Matthias C. Rillig
Matthias C. Rillig
Rosolino Ingraffia,
Matthias C. Rillig
Rosolino Ingraffia,
Dario Giambalvo,
Dario Giambalvo,
Dario Giambalvo,
Dario Giambalvo,
Matthias C. Rillig
Matthias C. Rillig
Dario Giambalvo,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Massimo Iovino,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Massimo Iovino,
Alfonso Salvatore Frenda,
Matthias C. Rillig
Massimo Iovino,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Massimo Iovino,
Massimo Iovino,
Matthias C. Rillig
Massimo Iovino,
Alfonso Salvatore Frenda,
Matthias C. Rillig
Anika Lehmann,
Massimo Iovino,
Matthias C. Rillig
Anika Lehmann,
Matthias C. Rillig
Anika Lehmann,
Anika Lehmann,
Matthias C. Rillig
Anika Lehmann,
Anika Lehmann,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Alfonso Salvatore Frenda,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Alfonso Salvatore Frenda,
Alfonso Salvatore Frenda,
Alfonso Salvatore Frenda,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Alfonso Salvatore Frenda,
Alfonso Salvatore Frenda,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Summary
Researchers investigated the effects of polystyrene microplastics on the soil nematode Caenorhabditis elegans, finding reduced reproduction, altered locomotion, and increased expression of stress-response genes at environmentally relevant concentrations.
Study Type
Environmental
Abstract. Microplastics are recognized as a factor of global change contaminating many environmental compartments. Agricultural soils are very likely to receive microplastic contamination and are of particular concern due to their role in food production. Microplastic fibers have already been shown to be able to affect soil properties, but their effect on different soil types is poorly understood. Moreover, limited information is available on how the presence of this pollutant can affect soil water erosion processes, which are extremely important issues in many environments. In the light of this, we performed two experiments (carried out on a microscale) to investigate how the presence of polyester microplastic fibers affects soil physical and hydrological parameters and processes such as aggregate formation and soil erosion in three different agricultural soil types (a Vertisol, an Entisol, and an Alfisol). Our data show that the effects of polyester microplastic fibers on soil physical parameters and erosion are strongly dependent on soil type. We found that microplastic fiber contamination can affect soil bulk density, capacitive indicators of soil physical quality, and decrease the formation of new aggregates (labile in the incubation period applied in our experiments) but did not affect their stability in water. However, we found that polyester microplastic fibers reduced soil loss and sediment concentration, especially in the most erodible soils. In this paper, we provide some hypotheses, but certainly future data are still needed to confirm or disprove our hypotheses. Overall, our results highlight the importance of broadly exploring soil properties, such as texture, mineralogy, organic carbon content, etc., to better understand how the various soil types respond to microplastic fiber contamination.