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通过滚动气泡水小滴去除疏水表面的灰尘

Dust removal from a hydrophobic surface by rolling fizzy water droplets.

作者信息

Yilbas Bekir Sami, Hassan Ghassan, Al-Qahtani Hussain, Bahatab Saeed, Sahin Ahmet Z, Al-Sharafi Abdullah, Abubakar Abba Abdulhamid

机构信息

Mechanical Engineering Department, King Fahd University of Petroleum & Minerals Dhahran Saudi Arabia

Center of Research Excellence in Renewable Energy (CoRE-RE), King Fahd University of Petroleum and Minerals (KFUPM) Dhahran 31261 Saudi Arabia.

出版信息

RSC Adv. 2020 May 27;10(34):19811-19821. doi: 10.1039/d0ra03215h. eCollection 2020 May 26.

Abstract

Here, environmental dust cleaning from an inclined hydrophobic surface by rolling liquid droplets has been studied and the influence of fluid droplets on the dust removal rate has been examined. The distilled and carbonated water droplets at different volumes were incorporated and the inclination angle of the dusty hydrophobic surface on the droplet motion was explored in the experiments. We demonstrated that the carbonated water droplet had higher translational velocity than the distilled water droplet on the dusty hydrophobic surface. The bubbles formed around the droplet surface acted as gas cushions at the interface between the solid surface and the fluid droplet while lowering the friction and pinning forces and enhancing the droplet translational velocity on the surface. Collected environmental dust has various components, some of which can dissolve in water while creating resorption/nucleation centers for bubble formation in the carbonated water droplet. The interaction between the bubbles and the dust particles at the liquid-solid interface enhanced the rate of dust particle movement into carbonated water. For a small-volume droplet (20 μL) at a low surface inclination angle ( = 1°), the rolling motion of the distilled and carbonated water droplets ceased on the hydrophobic surface at early periods.

摘要

在此,我们研究了通过滚动液滴对倾斜疏水表面进行环境灰尘清洁,并考察了液滴对除尘率的影响。实验中加入了不同体积的蒸馏水和碳酸水滴,并探究了含尘疏水表面的倾斜角度对液滴运动的影响。我们证明,在含尘疏水表面上,碳酸水滴的平移速度高于蒸馏水滴。液滴表面形成的气泡在固体表面与流体液滴之间的界面处充当气垫,同时降低摩擦力和钉扎力,并提高液滴在表面上的平移速度。收集到的环境灰尘有多种成分,其中一些可溶于水,同时在碳酸水滴中形成气泡的吸收/成核中心。气泡与液-固界面处的灰尘颗粒之间的相互作用提高了灰尘颗粒进入碳酸水的速率。对于低表面倾斜角度(=1°)的小体积液滴(20μL),蒸馏水和碳酸水滴的滚动运动在早期就会在疏水表面上停止。

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