首页> 外文期刊>Journal of Colloid and Interface Science >EFFECT OF METAL IONS AND COMPOUNDS ON THE RHEOLOGICAL PROPERTIES OF A DRAG-REDUCING CATIONIC SURFACTANT SOLUTION EXHIBITING SHEAR-INDUCED STRUCTURE FORMATION
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EFFECT OF METAL IONS AND COMPOUNDS ON THE RHEOLOGICAL PROPERTIES OF A DRAG-REDUCING CATIONIC SURFACTANT SOLUTION EXHIBITING SHEAR-INDUCED STRUCTURE FORMATION

机译:金属离子和化合物对减阻阳离子表面活性剂溶液(包括剪切诱导结构形成)的流变性的影响

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The effect of various metal ions and compounds on the viscoelasticity of a 12.5/5 mM sodium salicylate (NaSal)/tris(2-hydroxyethyl) tallowalkyl ammonium acetate(TTAA) surfactant solution has been studied phenomenologically. This solution normally exhibits shear-induced structure formation and strong drag reduction properties. The viscosity and N-1 buildup times under a constant shear rate increase monotonically with the concentration of added Zn(OH)(2), Cu(OH)(2), or Fe(OH)(3). The magnitude of N-1 and the viscosity do not change significantly with the addition of Zn(OH)(2), but decrease dramatically with increasing Cu(OH)(2), Cu-2(OH)CO3, and Fe(OH)(3) concentrations. The effect is believed to be due to adsorption on insoluble particulates and to reaction between copper compounds and NaSal. Mg2+ and Cu2+ do not change the steady-state viscosity and N-1, whereas Na+, Zn2+ and Ca2+ decrease these quantities significantly at low shear rates. The loss of viscoelasticity in the NaSal/TTAA solution due to Cu(OH)(2) and Cu-2(OH)(2)CO3 can be recovered, however, by adding the chelating agent ethylenediaminetetraacetate to the contaminated solution. The rheological results are consistent with drag reduction experiments. The results show that chemical contamination may be an important issue for drag-reducing cationic surfactant additives used in industrial applications where such contaminants are present. (C) 1997 Academic Press. [References: 15]
机译:现象学研究了各种金属离子和化合物对12.5 / 5 mM水杨酸钠(NaSal)/三(2-羟乙基)牛脂烷基乙酸铵(TTAA)表面活性剂溶液的粘弹性的影响。该溶液通常表现出剪切诱导的结构形成和强的减阻性能。恒定剪切速率下的粘度和N-1生成时间随添加的Zn(OH)(2),Cu(OH)(2)或Fe(OH)(3)的浓度单调增加。 N-1的大小和粘度不会随添加Zn(OH)(2)的变化而显着变化,但随Cu(OH)(2),Cu-2(OH)CO3和Fe(OH)的增加而显着降低)(3)浓度。认为该作用归因于对不溶性颗粒的吸附以及铜化合物与NaSal之间的反应。 Mg2 +和Cu2 +不会改变稳态粘度和N-1,而Na +,Zn2 +和Ca2 +在低剪切速率下会显着降低这些量。但是,可以通过将螯合剂乙二胺四乙酸盐添加到受污染的溶液中来弥补由于Cu(OH)(2)和Cu-2(OH)(2)CO3而导致的NaSal / TTAA溶液中粘弹性的损失。流变结果与减阻实验一致。结果表明,化学污染对于存在此类污染物的工业应用中使用的减阻阳离子表面活性剂添加剂可能是重要的问题。 (C)1997学术出版社。 [参考:15]

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