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Mechanism of the viscosity reduction with ternary compound in the sulfonate-straight chain alcohol-alkaline compound system

机译:磺酸盐直链醇 - 碱性化合物系统中三元化合物的粘度降低机理

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Research shows that the viscosity greatly reduction of viscous crude oil can improve the exploitation and promote the fluidity. We studied the effects and the mechanism of viscosity reduction of viscous crude oil emulsion after introducing the ternary compound of sulfonate-straight chain alcohol-alkaline as the viscosity reducer. Results showed that the best emulsifying performance can be achieved using 5% 1-pentanol. 0.2% of Na2CO3 and DEA shows the strongest emulsification ability of the O/W emulsion. The use of AOS, straight chain alcohol and petroleum carboxylate resolves diffusion on the oil-water interface, which can form a dense surfactant of single molecular layer to reduce the interfacial tension and prevent the phase change of the emulsification. When the mass fraction of AOS, Na2CO3, DEA and 1-pentanol were 0.2%, 0.25%, 0.2% and 5% respectively, the viscous crude oil would achieve the best effect of viscosity reduction.
机译:研究表明,粘性大大减少粘性原油可以改善剥削和促进流动性。 我们研究了粘性原油乳液的粘度降低的效果和机理,在引入磺酸盐直链醇 - 碱的三元化合物之后作为粘度减速器。 结果表明,可以使用5%1-戊醇实现最佳的乳化性能。 0.2%的Na2CO3和DEA显示出O / W乳液的最强乳化能力。 使用AOS,直链醇和石油羧酸盐消除了油水界面上的扩散,其可以形成单个分子层的致密表面活性剂,以降低界面张力并防止乳化的相变相变化。 当AOS,Na 2 CO 3,DEA和1-戊醇的质量分数分别为0.2%,0.25%,0.2%和5%时,粘性原油将达到粘度降低的最佳效果。

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