论文标题

使用气泡在倾斜表面上去除蛋白质或细菌

Removing proteins or bacteria on a tilted surface using air bubbles

论文作者

Hooshanginejad, Alireza, Sheppard, Timothy, Xu, Purui, Manyalla, Janeth, Jaicks, John, Esmaili, Ehsan, Jung, Sunghwan

论文摘要

由于对可持续清洁方法的兴趣越来越多,近年来,用气泡清洁表面一直是讨论的话题。具体而言,已经提出了一种使用气泡对农产品进行消毒的方法作为当前方法的环保替代品。在这项研究中,我们进行了实验以测试以污染表面的不同角度测试清洁功效。我们使用涂有蛋白质溶液或细菌生物膜的两种不同类型的表面。我们的实验结果表明,气泡在$θ\ $ 20^{\ rm {o}} $的表面角度表现出最佳的清洁功效,用于多散热器的气泡在0.3-2 mm的范围内,半径为0.6 mm,半径为0.6 mm。为了更好地了解潜在机制,我们对具有不同角度的单个气泡撞击表面进行数值分析。我们的数值和理论结果表明,剪切应力与滑动速度成比例,但与膜的厚度成反比,导致最大的剪切力在$θ\ of22^{\ rm {o}}} \ of the y y $ y y $ y y y y $中,与实验符合实验的良好符合实验。

Cleaning surfaces with bubbles has been a topic of discussion in recent years due to the growing interest in sustainable methods for cleaning. Specifically, a method of using air bubbles to sanitize agricultural produce has been proposed as an eco-friendly alternative to current methods. In this study, we conduct experiments to test the cleaning efficacy at different angles of inclination of a contaminated surface. We use two different types of surface coated with either a protein solution or a bacterial biofilm. Our experimental results indicate that bubbles exhibit the best cleaning efficacy at the surface angle of $θ\approx 20^{\rm{o}}$ for polydisperse bubbles in the range of 0.3-2 mm and with an average radius of 0.6 mm in radius. To gain a better understanding of the underlying mechanism, we perform a numerical analysis of a single air bubble impacting surfaces with different angles. Our numerical and theoretical results show that the shear stress, which is proportional to the sliding speed but inversely proportional to the thickness of the film, results in the maximum shear force occurring at $θ\approx22^{\rm{o}} \approx π/8$ which agrees well with the experiments.

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