首页> 外文期刊>Journal of Surfactants and Detergents >Synergistic Influence of pH and Temperature on Rheological Behavior of Adhesive Emulsions Stabilized with Micelle Dispersion of an Anionic Surfactant
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Synergistic Influence of pH and Temperature on Rheological Behavior of Adhesive Emulsions Stabilized with Micelle Dispersion of an Anionic Surfactant

机译:pH与温度对阴离子表面活性剂胶束分散体稳定粘合乳液流变行为的协同影响

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摘要

The influence of emulsion pH and temperature on the rheological behavior of adhesive oil-in-water (o/w) emulsions stabilized with an anionic surfactant (sodium dodecyl benzene sulfonate, SDBS) was studied. The flow properties of emulsions as a complex fluid were investigated using steady and dynamic rheometry for characterization of non-Newtonian behavior. Emulsion pH was varied from 2 to 12 and temperature was varied from 20 to 50 degrees C, respectively. The influences of the above-mentioned variables on the rheology of o/w emulsion were studied using steady-shear and dynamic oscillatory experiments. Various viscosity models (2, 3, and 4 parameter rheological model) were used to predict the rheological parameters. An increase in the pH of the emulsion led to an increase in the emulsion stability, viscosity, and viscoelastic properties (G', G '',eta*, and tan d), and a decrease in the mean droplet size of the emulsion. A decrease in the temperature yields higher values of steady-shear viscosity and viscoelastic properties upon a decrease in droplet size. Emulsions were characterized as flocculated structured liquid exhibiting a characteristic crossover frequency (omega*) within the range of angular frequency studied in oscillatory measurements. Overall, emulsions exhibited non-Newtonian shearthinning behavior and the synergy of pH and temperature significantly influences the emulsion rheology.
机译:乳液pH与温度对用阴离子表面活性剂(十二烷基苯磺酸钠,SDBS)稳定的粘性油 - 水(O / W)乳液的流变行为的影响。使用稳定动态的流变学研究了非牛顿行为表征作为复杂流体的乳液的流动性。乳液pH从2至12变化,并且温度分别从20至50℃变化。使用稳态剪切和动态振荡实验研究了上述变量对O / W乳液流变学的影响。各种粘度模型(2,3和4个参数流变模型)用于预测流变参数。乳液的pH的增加导致乳液稳定性,粘度和粘弹性(G',G'',ETA *和TAN D)的增加,以及乳液的平均液滴尺寸的降低。在液滴尺寸减小时,温度的降低产生稳定剪切粘度和粘弹性的较高值。乳液的特征在于絮凝结构液体,其在振荡测量中研究的角度频率范围内具有特征交叉频率(OMEGA *)。总体而言,乳液表现出非牛顿的剪切行为,pH和温度的协同作用显着影响乳液流变学。

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