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处于不同电势下的稳定悬垂液滴对的聚并行为。

Coalescence Behavior of Stable Pendent Drop Pairs Held at Different Electric Potentials.

作者信息

Mhatre Sameer, Hjartnes Tomas, Simon Sébastien, Sjöblom Johan

机构信息

Ugelstad Laboratory, Department of Chemical Engineering , Norwegian University of Science and Technology (NTNU) , NO-7491 Trondheim , Norway.

Department of Chemical and Petroleum Engineering, Schulich School of Engineering , University of Calgary , Calgary , Canada T2N 1N4.

出版信息

Langmuir. 2020 Feb 25;36(7):1642-1650. doi: 10.1021/acs.langmuir.9b03554. Epub 2020 Feb 13.

Abstract

In this work, we studied the electrocoalescence behavior of stable pendent drop pairs and compared the results with clean drops, where the interface is void of surface-active compounds. The drop phase was brine and the drop-oil interface was stabilized by aging into asphaltene and demulsifier solutions. The experiments involving asphaltene-laden drops required the bulk phase to be clear for visualization of the drops, which is realized by a procedure to replace the asphaltene-containing dark bulk phase by a pure solvent mixture. The narrowly spaced pendent drops, maintained at different electric potentials, acquired net surface charge of opposite polarity, which led to the Coulombic attraction in the drop pair. After the application of voltage, a drop pair was observed to remain at a standstill, attracted, or coalesced depending on the interdrop separation, drop size, and potential difference. We systematically investigated the influence of different surface-active compounds on interfacial stabilization and electrostatic drop-drop attraction and coalescence behavior. Interestingly, the experimental data showed that a drop pair coalesces at a lower potential (Δ) when the drop-oil interface is populated with the surface-active molecules. Similarly, the minimum voltage (Δ) needed to induce attraction between two stable drops and the degree of the attraction are different than those of the clean drops. Furthermore, the demulsifier-laden drops exhibited dissimilar attraction, coalescence, and noncoalescence characteristics to the drops stabilized in asphaltene solutions. Our analysis suggested that the asphaltenes and the commercial demulsifiers differently influenced the drops' response to the applied electric potential. The contrasting coalescence nature of the stable drops could be attributed to a complex interplay between hydrodynamics, electrostatics, and interfacial reorganization of the molecules and charges.

摘要

在这项工作中,我们研究了稳定悬垂液滴对的电聚结行为,并将结果与清洁液滴进行了比较,清洁液滴的界面没有表面活性化合物。液滴相为盐水,液滴 - 油界面通过在沥青质和破乳剂溶液中老化来稳定。涉及含沥青质液滴的实验要求主体相清澈以便观察液滴,这通过用纯溶剂混合物替换含沥青质的深色主体相的程序来实现。保持在不同电势下的窄间距悬垂液滴获得了相反极性的净表面电荷,这导致了液滴对中的库仑吸引力。施加电压后,观察到液滴对根据液滴间间距、液滴大小和电势差保持静止、相互吸引或聚结。我们系统地研究了不同表面活性化合物对界面稳定性以及静电液滴 - 液滴吸引和聚结行为的影响。有趣的是,实验数据表明,当液滴 - 油界面存在表面活性分子时,液滴对在较低电势(Δ)下聚结。同样,诱导两个稳定液滴之间吸引所需的最小电压(Δ)以及吸引程度与清洁液滴不同。此外,负载破乳剂的液滴表现出与在沥青质溶液中稳定的液滴不同的吸引、聚结和不聚结特性。我们的分析表明,沥青质和商业破乳剂对液滴对施加电势的响应有不同影响。稳定液滴的不同聚结性质可归因于流体动力学、静电学以及分子和电荷的界面重组之间的复杂相互作用。

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