Colloids with reversible stability switched by tris[2-(dimethylamino)ethyl]amine

IF 1.6 4区 工程技术 Q3 CHEMISTRY, APPLIED
Hongping Quan, Huoxin Luan, Dan Guan, Mingmin Zhang, Zhengyang Li, Xiran He, Xin Su
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引用次数: 0

Abstract

The addition of salt can irreversibly disrupt the stability of both emulsions and polymer latex. The reversible conversion of amines into organic ammonium salts can be induced by CO2 stimulation, thereby enabling the switching of colloids. The switchable amine, tris[2-(dimethylamino)ethyl]amine (Me6TRAN), was selected for the study. The electrical conductivity of an aqueous solution of Me6TRAN is modulated by the introduction and removal of CO2. The critical micelle concentration of sodium dodecyl benzene sulfonate (SDBS) was observed to decrease from 1.0 × 10−3 to 5.0 × 10−4 M upon the introduction of Me6TRAN, as confirmed by surface tension measurements conducted under CO2. The emulsion of crude oil, which comprised of SDBS and Me6TRAN, underwent reversible destruction and restoration upon exposure to CO2 and N2. The PMMA latex exhibited a clear phase separation subsequent to CO2 sparging, but attained homogeneity upon N2 sparging. This study is anticipated to introduce a novel avenue for emulsion or polymer latex that can undergo demulsification and emulsification through CO2 stimulation.

三[2-(二甲基氨基)乙基]胺可逆转换稳定性的胶体
添加盐会不可逆地破坏乳液和聚合物胶乳的稳定性。在二氧化碳的刺激下,胺可以可逆地转化为有机铵盐,从而实现胶体的切换。本研究选择了可转换胺--三[2-(二甲基氨基)乙基]胺(Me6TRAN)。Me6TRAN 水溶液的电导率可通过引入和移除二氧化碳来调节。在二氧化碳条件下进行的表面张力测量证实,在引入 Me6TRAN 后,十二烷基苯磺酸钠(SDBS)的临界胶束浓度从 1.0 × 10-3 降至 5.0 × 10-4 M。由 SDBS 和 Me6TRAN 组成的原油乳液在暴露于 CO2 和 N2 时发生了可逆的破坏和恢复。PMMA 胶乳在二氧化碳喷射后出现了明显的相分离,但在氮气喷射后达到了均匀性。预计这项研究将为乳液或聚合物胶乳提供一种新的途径,通过二氧化碳的刺激,乳液或聚合物胶乳可以发生破乳和乳化。
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来源期刊
Journal of Surfactants and Detergents
Journal of Surfactants and Detergents 工程技术-工程:化工
CiteScore
3.80
自引率
6.20%
发文量
68
审稿时长
4 months
期刊介绍: Journal of Surfactants and Detergents, a journal of the American Oil Chemists’ Society (AOCS) publishes scientific contributions in the surfactants and detergents area. This includes the basic and applied science of petrochemical and oleochemical surfactants, the development and performance of surfactants in all applications, as well as the development and manufacture of detergent ingredients and their formulation into finished products.
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