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使用阴离子表面活性剂的多刺激响应泡沫

Multistimuli-Responsive Foams Using an Anionic Surfactant.

机构信息

Department of Petroleum and Geosystems Engineering , The University of Texas at Austin , Austin , Texas 78712 , United States.

出版信息

Langmuir. 2018 Sep 18;34(37):11010-11020. doi: 10.1021/acs.langmuir.8b01796. Epub 2018 Sep 10.

Abstract

In this work, we report a novel class of a commercially available surfactant which shows a multistimuli-responsive behavior toward foam stability. It comprises three components-a hydrophobe (tristyrylphenol), a temperature-sensitive block (polypropylene oxide, PO), and a pH-sensitive moiety (carboxyl group). The hydrophobicity-hydrophilicity balance of the surfactant can be tuned by changing either the pH or temperature of the system. At or below pH 4, the carboxyl functional group is dominantly protonated, resulting in zero foamability. At higher pH, the surfactant exhibits good foamability and foam stability marked with a fine bubble texture (∼200 μm). Foam destabilization could be achieved rapidly by either lowering the pH or bubbling CO gas. At a fixed pH in the presence of salt, increasing the temperature to 65 °C resulted in rapid defoaming because of the increased hydrophobicity of the PO chain. This stimuli-induced stabilization and destabilization of foam were found to be reversible. We envisage the use of such a multi-responsive foaming system in diverse applications such as foam-enhanced oil recovery and environmental remediation where spatial and temporal control over foam stability is desirable. The low-cost commercial availability of the surfactant further makes it lucrative.

摘要

在这项工作中,我们报告了一类新型的市售表面活性剂,它对泡沫稳定性表现出多刺激响应行为。它由三部分组成-疏水性物质(三苯乙烯基苯酚),温度敏感嵌段(聚氧化丙烯,PO)和 pH 敏感部分(羧基)。通过改变体系的 pH 或温度,可以调整表面活性剂的亲疏水性平衡。在 pH 4 或以下时,羧基官能团主要质子化,导致零起泡性。在较高的 pH 值下,表面活性剂表现出良好的起泡性和泡沫稳定性,具有精细的气泡结构(约 200μm)。通过降低 pH 或鼓入 CO 气体,可迅速使泡沫失稳。在存在盐的固定 pH 值下,将温度升高到 65°C 会由于 PO 链的疏水性增加而导致迅速消泡。这种刺激诱导的泡沫稳定性和不稳定性被发现是可逆的。我们设想在各种应用中使用这种多响应发泡系统,例如泡沫强化采油和环境修复,其中需要对泡沫稳定性进行空间和时间控制。表面活性剂的低成本商业可用性使其更具吸引力。

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