首页 /研究 /Capillary Skimming of Floating Microplastics via a Water‐Bridged Ratchet
OTHER

Capillary Skimming of Floating Microplastics via a Water‐Bridged Ratchet

Seohyun Cho, Young Jin Lee, Y.-J. Lee, Young‐A Lee, Ho‐Young Kim, Seong Jin Kim, Seok Chung, Myoung‐Woon Moon

发表年份
2024
引用次数
3
访问权限
开放获取

摘要

Abstract Floating microplastics (MPs) have recently become a major concern in marine pollution; however, current filter‐based technology is hardly effective for directly removing such MPs from the water surface because of specific mesh size and clogging issues. This paper introduces a new skimming concept for removing floating MPs utilizing capillary force mediated by the elevation of a hydrophilic ratchet at the air−water interface. MPs floating near the ratchet surface are spontaneously forced toward the ratchet with a concave water meniscus, driven by the Cheerios effect. The MPs can then be skimmed and temporarily held by the deforming concave water meniscus as the ratchet rises. Here, it is found that the stability of the water bridge plays a crucial role in skimming success because it provides capillary adhesion between the MP and the ratchet. The proposed capillary skimming method is observed to be effective across nearly all types of floating MPs, ranging in size from 1 to 4 mm, and with densities varying from 0.02 to 0.97 g cm − 3 , which is also demonstrated by a prototype of marine robot cleaner.

关键词

MicroplasticsRatchetCapillary actionMeniscusMechanicsMaterials scienceMarine engineeringEnvironmental scienceNanotechnologyOptics

相关论文

查看 OTHER 分类全部论文