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首页> 外文期刊>Elementa: science of the anthropocene >Enriching particles on a bubble through drainage: Measuring and modeling the concentration of microbial particles in a bubble film at rupture
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Enriching particles on a bubble through drainage: Measuring and modeling the concentration of microbial particles in a bubble film at rupture

机译:通过排水富集气泡上的颗粒:测量和模拟破裂时气泡膜中微生物颗粒的浓度

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The concentration of microbes and other particulates is frequently enriched in the droplets produced by bursting bubbles. As a bubble rises to the ocean surface, particulates in the bulk liquid can be transported to the sea surface microlayer by attaching to the bubble’s interface. When the bubble eventually ruptures, a fraction of these particulates is often ejected into the surroundings in film droplets with a particulate concentration that is higher than in the liquid from which they formed. The precise mechanisms responsible for this enrichment are unclear, yet such enrichment at the ocean surface influences important exchange processes with the atmosphere. Here we provide evidence that drainage, coupled with scavenging, is responsible for the enrichment. By simultaneously recording the drainage and rupture effects with high-speed and standard photography, we directly measured the particulate concentrations in the thin film of a bubble cap at the moment before it ruptures. We observed that the enrichment factor strongly depends on the film thickness at rupture, and developed a physical model, based on scavenging and drainage, that is consistent with our observations. We have also demonstrated that this model is quantitatively consistent with prior observations of film drop enrichment, indicating its potential for a broader range of applications in the study of the sea surface microlayer and related phenomena.
机译:微生物和其他颗粒物的浓度通常富含气泡破裂产生的液滴。当气泡上升到海洋表面时,散装液体中的颗粒可以通过附着到气泡的界面上而被输送到海面微层。当气泡最终破裂时,这些微粒的一部分通常以比其形成的液体中的微粒浓度高的薄膜液滴的形式喷射到周围环境中。导致这种富集的确切机制尚不清楚,但是在海洋表面的这种富集会影响与大气的重要交换过程。在这里,我们提供证据表明排水和清除是造成浓缩的原因。通过使用高速和标准摄影同时记录排水和破裂的影响,我们直接测量了破裂之前的气泡帽薄膜中的微粒浓度。我们观察到富集因子在很大程度上取决于破裂时的膜厚,并基于清除和排放建立了与我们的观察结果一致的物理模型。我们还证明了该模型在数量上与先前对膜滴富集的观测结果一致,表明其在海表微层和相关现象研究中的广泛应用潜力。

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