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Microplastic in Australian processed organics: Abundance, characteristics and potential transport to soil ecosystem

Journal of Environmental Management 2025 15 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 58 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Nikol Slynkova, Hsuan-Cheng Lu Hsuan-Cheng Lu Hsuan-Cheng Lu Hsuan-Cheng Lu Hsuan-Cheng Lu Hsuan-Cheng Lu Hsuan-Cheng Lu Hsuan-Cheng Lu Hsuan-Cheng Lu Hsuan-Cheng Lu Hsuan-Cheng Lu Frédéric D.L. Leusch, Hsuan-Cheng Lu Frédéric D.L. Leusch, Hsuan-Cheng Lu Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Hsuan-Cheng Lu Hsuan-Cheng Lu Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Hsuan-Cheng Lu Hsuan-Cheng Lu Nikol Slynkova, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Shima Ziajahromi, Winnie Cao, Scott Jones, Shima Ziajahromi, Scott Jones, Scott Jones, Hsuan-Cheng Lu Scott Jones, Frédéric D.L. Leusch, Shima Ziajahromi, Frédéric D.L. Leusch, Shima Ziajahromi, Shima Ziajahromi, Frédéric D.L. Leusch, Shima Ziajahromi, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Barry Warwick, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Shima Ziajahromi, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Nikol Slynkova, Nikol Slynkova, Shima Ziajahromi, Shima Ziajahromi, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Hsuan-Cheng Lu Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Frédéric D.L. Leusch, Raymond Trevorah, Frédéric D.L. Leusch, Raymond Trevorah, Raymond Trevorah, Raymond Trevorah, Barry Warwick, Frédéric D.L. Leusch, Barry Warwick, Barry Warwick, Barry Warwick, Shima Ziajahromi, Shima Ziajahromi, Frédéric D.L. Leusch, Hsuan-Cheng Lu Frédéric D.L. Leusch, Shima Ziajahromi, Frédéric D.L. Leusch, Hsuan-Cheng Lu

Summary

Researchers analyzed processed organic waste products from 11 facilities across Australia and found microplastics in every sample, with concentrations ranging from 1,500 to 16,000 particles per kilogram. They estimated that billions to trillions of microplastic particles could be transferred to Australian soils annually through the application of compost and biosolids. The findings highlight that recycling organic waste, while beneficial for waste reduction, may inadvertently spread microplastic contamination to agricultural land.

Polymers

The extensive use and application of recycled organics, including biosolids and compost, has been considered as an effective waste management approach to reduce waste to landfills. However, concerns have been raised about the presence of microplastics (MPs) in these recycled organics and their subsequent transfer to soils. Although the presence of MPs in biosolids has been widely documented, our knowledge about the occurrence and characteristics of MPs in processed organic waste such as compost is still limited. The present study aimed to investigate the abundance, characteristics and potential sources of MPs (>25 μm) in processed organic waste samples collected across eleven sites with different processing systems in Australia. This includes compost, digestate from anaerobic digestion and rapidly dehydrated food waste. MPs, mainly polyethylene, polypropylene and polyester, were found across all samples with concentrations ranging from 1500 to 16,000 MP/kg dry weight. The majority of these MPs fell within the smaller size range of 25-500 μm. Using the concentration and characteristics (size range, morphology, density) of detected MPs, the mass abundance of MPs was estimated to be between 7 and 760 mg/kg dry weight. We also estimated that between 5.2 × 10<sup>10</sup> to 6.2 × 10<sup>12</sup> MP/year could be transferred to the land via application of processed organic waste in Australia. The findings of this study also showed compostable bags as a potential source of MPs in some samples. This study provides the first evidence of MPs in processed organic waste in Australia and emphasises the need to more comprehensively understand the fate of MPs during the composting processes, their contribution to soil MP contamination, and their impacts on soil biota.

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