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Development of a Stimuli-Responsive Gemini Zwitterionic Viscoelastic Surfactant for Self-Diverting Acid

机译:开发刺激响应的双子粒子粘弹性表面活性剂,用于自转移酸

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A Gemini zwitterionic viscoelastic surfactant named self diverting acid - gemini sulfonated surfactant (SDA-GS), which has double quaternary ammonium groups, double sulfonate groups, and two hydrophobic tails, was synthesized from oleylamidopropyl dimethylamine, 1,3-propanesultone, and 2, 2-bis(bromomethyl)propane-1, 3-diol. The viscosity of an SDA-GS aqueous solution varies with acid and calcium chloride concentrations. With a decrease in the HCl concentration, the viscosity of the acid solution prepared with SDA-GS increases to a maximum value, followed by a decrease, which results from the aggregation of the surfactant into wormlike micelles and the following disaggregation. Calcium ions generated by the reaction of acid and calcium carbonate can enhance the aggregation of the surfactant to increase the peak viscosity of the acid solution. The peak viscosity of the acid solution prepared by 5 wt.% SDA-GS without calcium ions could only reach 73.2 mPa.s when the HCl concentration was 4 wt.%, but that of the acid solution with calcium carbonate powder added could reach over 200 mPa.s when the HCl concentration was consumed to 4 wt.% and the calcium chloride concentration 21.6 wt.%. The viscoelastic measurements proved that calcium ions can drive the growth of the wormlike micelle. The acid and Ca2+ response of SDA-GS can be applied in self-diverting acid to improve the acid displacement in the heterogeneous reservoir. Experimental evaluation showed that the acid solution prepared by SDA-GS and the selected corrosion inhibitor showed a good corrosion inhibition performance and a viscosity variation that makes it an efficient self-diverting acid. The spent acid (21.6 wt.%) with 4 wt.% HCl retained high viscosity over 80 mPa.s at a 170 s(-1) shearing rate and at 120 degrees C after 90 min. The parallel core flood tests to simulate in situ application of SDA-GS acid showed that the permeability improvement ratios (K-1/K-0) of the cores could reach 182.3 and 278.4 at 60 and 90 degrees C, respectively.
机译:从甲氧酰氨基甲胺二甲胺,1,3-丙酮和2,1,3-丙酮和2,1,3-丙烯酮和2,1,3-丙酮和2, 2-双(溴甲基)丙烷-1,3-二醇。 SDA-GS水溶液的粘度随酸和氯化钙浓度而变化。随着HCl浓度的降低,用SDA-GS制备的酸溶液的粘度增加到最大值,然后降低,这是由表面活性剂的聚集成蠕虫状胶束的聚集和以下分解。由酸和碳酸钙的反应产生的钙离子可以增强表面活性剂的聚集,以增加酸溶液的峰值粘度。通过5重量%的酸溶液的峰值粘度。当HCl浓度为4重量%时,没有钙离子的%SDA-Gs只能达到73.2MPa。%,但添加碳酸钙粉末的酸溶液可以达到当HCl浓度消耗至4重量%时,200MPa。%和氯化钙浓度21.6重量%。粘弹性测量结果证明,钙离子可以驱动蠕虫胶束的生长。 SDA-GS的酸和Ca2 +响应可以应用于自转移酸,以改善异质储层中的酸位移。实验评价显示通过SDA-GS和所选腐蚀抑制剂制备的酸溶液显示出良好的腐蚀抑制性能和粘度变异,使其成为有效的自转移酸。用4重量%的废酸(21.6重量%)。%HCl以170s(-1)剪切速率在80mPa中保留高粘度,并在90分钟后在120℃下。以SDA-GS酸的原位应用模拟的平行核心泛洪试验表明,芯的渗透性改善比(K-1 / K-0)分别可以分别在60和90℃下达到182.3和278.4。

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