4.8 Article

Microplastics in the Lut and Kavir Deserts, Iran

Journal

ENVIRONMENTAL SCIENCE & TECHNOLOGY
Volume 55, Issue 9, Pages 5993-6000

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.est.1c00615

Keywords

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Funding

  1. Environmental Health Engineering Research Center, the Kerman University of Medical Sciences [98000938]

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This study isolated microplastics from soils collected from the Kavir and Lut Deserts on the Iranian plateau, with most of them having a fibrous nature and being composed of polyethylene terephthalate and Nylon. The majority of microplastics are likely brought into these desert environments from distant sources via wind, undergoing rapid transport, internal recycling, as well as significant photo-oxidation and mechanical weathering.
Although microplastics (MPs) are ubiquitous environmental contaminants, little is known about their occurrence and behavior in the terrestrial setting. In this study, MPs have been isolated from soils collected from various geomorphological features (yardangs, sand dunes, moving sands, seasonal lakes) of the Kavir and Lut Deserts on the Iranian plateau. The number of MPs identified in 300 g samples ranged from zero (not detected) in several yardang tops to 25 on some yardang hillsides, with an overall average abundance of about 0.02 MP g(-1). The majority of MPs were of a fibrous nature with a size distribution (<= 100 mu m to >= 1000 mu m) skewed toward the lower end, and analysis of a selection of particles by mu-Raman spectroscopy showed that polyethylene terephthalate and Nylon (polyamide) were the principal polymers. Scanning electron microscopy revealed intense degradation of some particles but limited weathering of others. With little evidence of meso- and macroplastics in the deserts, it appears that the majority of MPs are brought into these environments from distant sources via the wind, with smaller, seasonal contributions from runoff associated with the adjacent mountains. It is proposed that some windborne MPs are transported through the deserts relatively rapidly, while others are subject to internal recycling and significant photo-oxidation and mechanical weathering.

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