Impact of microplastic pollution on breaking waves

Jotam Bergfreund, Ciatta Wobill, Frederic M. Evers, B. Hohermuth, Pascal Bertsch, Laurent Lebreton, Erich J Windhab, Peter Fischer
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Abstract

Anthropogenic plastic waste heavily pollutes global water systems. In particular, micron-sized plastic debris can have severe repercussions for the ocean flora and fauna. Microplastics may also affect physical processes such as wave breaking, which are critical for air–sea interaction and albedo. Nevertheless, the effects of micron-sized plastic debris on geophysical processes are widely unexplored. Herein, we investigate the effect of microplastic collected from the North Pacific and a surfactant mimicking surface active materials present in the ocean on the stability of foam generated by breaking wave experiments. We found that microplastic particles increase foam stability. In particular, an increased foam height was found in a column foaming setup, while an increased foam area was observed in a laboratory-scale breaking wave channel. We propose that microplastic particles assemble at the air–water interface of foam bubbles, form aggregates, presumably decrease the liquid drainage in the liquid film, and thus change the lifetime of the liquid film and the bubble. The effect of surfactants is generally larger due to their higher surface activity but still in a range where synergistic effects can be observed. Our results suggest that microplastic could influence oceanic processes essential for air–sea interaction, sea spray formation, and albedo.
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微塑料污染对破浪的影响
人为产生的塑料垃圾严重污染了全球水系。特别是,微米大小的塑料碎片会对海洋动植物造成严重影响。微塑料还可能影响海浪破碎等物理过程,这对海气相互作用和反照率至关重要。然而,微米级塑料废弃物对地球物理过程的影响尚未得到广泛研究。在此,我们研究了从北太平洋收集的微塑料和一种模仿海洋中存在的表面活性物质的表面活性剂对破浪实验产生的泡沫稳定性的影响。我们发现,微塑料颗粒能增加泡沫的稳定性。特别是,在柱状发泡装置中发现泡沫高度增加,而在实验室规模的破浪通道中观察到泡沫面积增加。我们认为,微塑料颗粒聚集在泡沫气泡的水气界面,形成聚集体,可能减少了液膜中的液体排出,从而改变了液膜和气泡的寿命。由于表面活性剂的表面活性较高,因此其影响一般较大,但仍在可观察到协同效应的范围内。我们的研究结果表明,微塑料可能会影响对海气相互作用、海雾形成和反照率至关重要的海洋过程。
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