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存在表面活性剂晶体时的水性泡沫。

Aqueous Foams in the Presence of Surfactant Crystals.

作者信息

Binks Bernard P, Shi Hui

机构信息

Department of Chemistry and Biochemistry , University of Hull , Hull , HU6 7RX , U.K.

出版信息

Langmuir. 2020 Feb 4;36(4):991-1002. doi: 10.1021/acs.langmuir.9b03862. Epub 2020 Jan 27.

Abstract

Aqueous foams are used extensively in many fields and anionic surfactants are commonly used foaming agents. However, potential trouble may arise when they are utilized in hard water areas and/or at low temperatures. Anionic surfactants, like sodium dodecyl sulfate (SDS), may precipitate in the form of crystals when the concentration of divalent counterions such as Mg exceeds a certain limit. In an attempt to prepare ultrastable foams containing precipitated crystals, the behavior of SDS in water was systematically investigated as a function of surfactant concentration at different concentrations of Mg(NO) prior to a study of their foam properties. We quantitatively study the conversion of surfactant micelles to crystals and the redissolution of crystals into micelles. It was found that the presence of surfactant crystals reduced the initial foam volume and foam half-life but greatly improved the long-term stability of foams. Foam studies were also conducted for the supernatant and sediment isolated from crystal dispersions so that the importance of surfactant crystals to foam stability could be established. Despite the foamability of a sediment being low, an order of magnitude increase in foam half-life was related to the coverage of bubble surfaces by surfactant crystals. Both rapid cooling and ultrasonication were shown to influence the surfactant crystal shape and size with an impact on foam properties.

摘要

水性泡沫在许多领域都有广泛应用,阴离子表面活性剂是常用的发泡剂。然而,当它们在硬水地区和/或低温环境中使用时,可能会出现潜在问题。像十二烷基硫酸钠(SDS)这样的阴离子表面活性剂,当二价抗衡离子(如镁离子)的浓度超过一定限度时,可能会以晶体形式沉淀。在研究含有沉淀晶体的超稳定泡沫的制备过程中,在研究其泡沫性质之前,系统地研究了SDS在水中的行为随表面活性剂浓度以及不同浓度硝酸镁(Mg(NO₃)₂)的变化情况。我们定量研究了表面活性剂胶束向晶体的转变以及晶体向胶束的再溶解过程。结果发现,表面活性剂晶体的存在降低了初始泡沫体积和泡沫半衰期,但大大提高了泡沫的长期稳定性。还对从晶体分散体中分离出的上清液和沉淀物进行了泡沫研究,以便确定表面活性剂晶体对泡沫稳定性的重要性。尽管沉淀物的发泡性较低,但泡沫半衰期增加了一个数量级,这与表面活性剂晶体对气泡表面的覆盖有关。快速冷却和超声处理都显示会影响表面活性剂晶体的形状和大小,进而影响泡沫性质。

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