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Self-propulsion of dew drops on lotus leaves: a potential mechanism for self cleaning

机译:荷叶上的水滴自我推进:自我清洁的潜在机制

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摘要

This study shows that condensation on the hierarchically structured lotus leaf can facilitate self-propulsion of water droplets off the surface. Droplets on leaves inclined at high angles can be completely removed from the surface by self-propulsion with the assistance of gravity. Due to the small size of mobile droplets, light breezes may also fully remove the propelled droplets, which are typically projected beyond the boundary layer of the leaf cuticle. Moreover the self-propelled droplets/condensate were able to remove contaminants (eg silica particles) from the leaf surface. The biological significance of this process may be associated with maintaining a healthy cuticle surface when the action of rain to clean the surface via the lotus effect is not possible (due to no precipitation). Indeed, the native lotus plants in this study were located in a region with extended time periods (several months) without rain. Thus, dew formation on the leaf may provide an alternative self-cleaning mechanism during times of drought and optimise the functional efficiency of the leaf surface as well as protecting the surface from long term exposure to pathogens such as bacteria and fungi.
机译:这项研究表明,在层次结构化的荷叶上的凝结可以促进水滴从表面自我推进。在重力的作用下,可以通过自我推进将大角度倾斜的叶子上的水滴从表面完全清除掉。由于可移动的液滴的尺寸小,微风还可以完全去除被推进的液滴,这些推进的液滴通常投射到叶角质层的边界层之外。而且,自推进的液滴/冷凝物能够从叶片表面去除污染物(例如二氧化硅颗粒)。当无法通过雨水通过荷花作用清洁表面时(由于没有沉淀),此过程的生物学意义可能与保持健康的表皮表面有关。确实,本研究中的本地荷花植物位于长时间(数月)无雨的地区。因此,叶片上的结露可在干旱期间提供一种替代的自清洁机制,并优化叶片表面的功能效率,并保护表面免受长期暴露于病原体(如细菌和真菌)的影响。

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