磨损(机械)
风积作用
微塑料
材料科学
石英
复合材料
粒径
矿物学
化学
地质学
环境化学
地貌学
物理化学
作者
Joanna E. Bullard,Zhaoxia Zhou,Samuel P. Davis,Shaun Fowler
标识
DOI:10.1021/acs.est.2c05396
摘要
. 80%. For abrasion periods up to 200 h, the microplastic beads remained spherical with minimal change to overall shape. Over 95% of the fragments of plastic removed from the surface of the microbeads during the abrasion process had a diameter of ≤10 μm. In addition, during the abrasion process, fine particles derived from breakdown of the quartz grains became attached to the surfaces of the microbeads resulting in a reduction in carbon and an increase in silicon detected on the particle surface. The results suggest that microplastics may be mechanically broken down during aeolian saltation and small fragments produced have the potential for long distance transport as well as being within the size range for human respiration.
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