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Stability of oil-in-water emulsions by SDS compound

机译:SDS化合物油水乳液的稳定性

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摘要

Surfactants are often required to reduce emulsion viscosity and heavy-oil flow resistance in pipelines, thereby forming a stable oil-in-water emulsion under shear stress. This study aimed to quantitatively discuss and analyze the stability of oil-in-water emulsions and characterize them through the initial viscosity change rate K. The value of K was obtained based on the oil-rich-phase viscosity curves of oil-in-water emulsions comprising sodium dodecyl sulfate (SDS), heavy oil, and water at different time points. Results showed that a smaller K corresponded to a more stable emulsion according to analysis of the effect of the compound system on emulsion stability and the synergistic mechanism. We then combined with 1-pentanol and octyldecyl glucoside (APG0810) with SDS. Results showed that the K values of the emulsions decreased from 19.457 to 6.284, and 19.457 to 5.834, respectively, after mixing 6% 1-pentanol and 0.4% APG, respectively, with 0.14% SDS. Then, 0.14% SDS was compared with 1.2% a mass fraction of each of the three additives to form a compound system, and the K values were found to follow the trend K1-pentanol/SDS K-APG/SDS. Thus, the stability of APG/SDS oil-in-water emulsion was better than that of 1-pentanol/SDS emulsion.
机译:通常需要表面活性剂来减少管道中的乳液粘度和重油流动性,从而在剪切应力下形成稳定的水乳液。本研究旨在定量地讨论和分析水包油乳液的稳定性,并通过初始粘度变化率K表征它们。基于油 - 水的富含油相粘度曲线获得K的值在不同时间点的乳液包含十二烷基硫酸钠(SDS),重油和水。结果表明,较小的K对应于复合体系对乳液稳定性和协同机制的效果的分析。然后我们将1-戊醇和八戊基葡糖苷(APG0810)与SDS合并。结果表明,乳液的k值分别从19.457至6.284,和19.457至5.834分别在混合6%1-戊醇和0.4%APG,0.14%SDS中。然后,将0.14%SDS与三种添加剂中的每种添加剂的大部分进行比较,以形成化合物系统,并发现K值遵循趋势K1-戊醇/ SDS> K-APG / SDS。因此,APG / SDS油状乳液的稳定性优于1-戊醇/ SDS乳液的稳定性。

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