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Effect of Droplet Size, Emulsifier Concentration, and Acid Volume Fraction on the Rheological Properties and Stability of Emulsified Acids

机译:液滴尺寸,乳化剂浓度和酸体积分数对乳化酸流变性质和稳定性的影响

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Acid-in-diesel emulsions have been extensively used in matrix acidizing and acid fracturing treatments. This acid has several advantages including lower corrosion rate, minimum number of additives, and deep acid penetration. For stimulation purposes, the most important properties of emulsified acid are reactivity, stability, and viscosity. The size distribution of the droplets of the emulsion affects these properties. The purpose of this paper is to correlate the droplet size of the dispersed phase (acid) to the viscosity and stability of emulsified acids. Measurements of the droplet size were acquired with laser diffraction techniques and analyzed using an advanced image processing system. Viscosities were measured using Brookfield PVS rheometer at varying temperatures and pressures. The stability of the emulsified acid was monitored using an HTHP see-through cell. Shear viscosity was measured for emulsions with droplet sizes ranging in diameter rom 1 to 20 μm. The viscosity covered a shear rate range from 10 to 750 s-1 and temperature range from 25 to 80 oC. All measurements were regenerated for emulsifier concentrations of 1, 5 and 10 gpt. It is noticed that finer emulsions have higher viscosities. Likewise, similar measurements were performed with varying acid volume fractions. The most stable emulsion was noted at an acid volume fraction of nearly 0.7. Other volume fractions were stable for a few hours before diesel was expelled as a separate layer above the emulsion. Eventually, the remaining emulsion restabilized at acid volume fraction of 0.7. This paper discusses the effects of acid volume fraction, emulsifier concentration and droplet size distribution on the rheological properties of emulsified acid.
机译:柴油中的酸乳剂已广泛用于基质酸化和酸压裂处理中。这种酸具有几个优点,包括较低的腐蚀速率,最少的添加剂数量和深酸渗透性。出于刺激目的,乳化酸最重要的性质是反应性,稳定性和粘度。乳液液滴的尺寸分布影响这些性能。本文的目的是使分散相(酸)的液滴尺寸与乳化酸的粘度和稳定性相关。液滴尺寸的测量通过激光衍射技术获得,并使用先进的图像处理系统进行分析。使用Brookfield PVS流变仪在变化的温度和压力下测量粘度。使用HTHP透明池监测乳化酸的稳定性。测量液滴直径范围为1至20μm的乳液的剪切粘度。粘度覆盖的剪切速率范围为10至750 s-1,温度范围为25至80 oC。乳化剂浓度分别为1、5和10 gpt时,将重新生成所有测量值。注意到更细的乳液具有更高的粘度。同样,用不同的酸体积分数进行类似的测量。注意到最稳定的乳液的酸体积分数接近0.7。在柴油作为乳液上方的单独层排出之前,其他体积分数稳定了几个小时。最终,剩余的乳液在0.7的酸体积分数下恢复稳定。本文讨论了酸体积分数,乳化剂浓度和液滴尺寸分布对乳化酸流变性的影响。

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