论文标题

微泡的夹带和溶解微孔内部

Entrapment and Dissolution of Microbubbles Inside Microwells

论文作者

Li, Xiaolai, Wang, Yuliang, Zeng, Binglin, Li, Yanshen, Tan, Huanshu, Zandvliet, Harold J. W., Zhang, Xuehua, Lohse, Detlef

论文摘要

在各种实际应用中,浸入表面微泡的形成和演变是必不可少的,例如使用超疏水重新物质,药物输送和矿物质浮选。在这项工作中,我们研究了微泡在疏水表面上的捕集,当水流沿着水流传递时,以及随后的微泡溶解。在夹带时,微泡最初是固定在微孔的边缘。在某个时候,三相触点线从边缘的一侧脱离并与墙壁分离,之后它进一步退缩。我们系统地研究了足迹直径的演变和被夹住的微泡的接触角,这表明溶解过程处于恒定接触角模式。通过改变气体不饱和水平,我们量化了高气体不饱和如何增强溶解过程,并与简化的理论预测进行比较,以溶解气泡在平面表面上。我们发现,从捕获的微孔中的微泡中扩散通量的几何部分阻​​塞效应导致溶解速率降低。

The formation and evolution of immersed surface micro- and nanobubbles are essential in various practical applications, such as the usage of superhydrophobic rematerials, drug delivery, and mineral flotation. In this work, we investigate the entrapment of microbubbles on a hydrophobic surface, structured with microwells, when water flow passes along, and the subsequent microbubble dissolution. At entrapment, the microbubble is initially pinned at the edge of the microwell. At some point, the three-phase contact line detaches from one side of the edge and separates from the wall, after which it further recedes. We systematically investigate the evolution of the footprint diameter and the contact angle of the entrapped microbubbles, which reveals that the dissolution process is in the constant contact angle mode. By varying the gas undersaturation level, we quantify how a high gas undersaturation enhances the dissolution process, and compare with simplified theoretical predictions for dissolving bubbles on a plane surface. We find that geometric partial blockage effects of the diffusive flux out of the microbubble trapped in the microwell lead to reduced dissolution rates.

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