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Effect of a synthesized anionic fluorinated surfactant on wettability alteration for chemical treatment of near-wellbore zone in carbonate gas condensate reservoirs

机译:合成的阴离子氟化表面活性剂对碳酸盐液冷凝水储层近井眼区化学处理润湿性改变的影响

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The pressure drop during production in the near-wellbore zone of gas condensate reservoirs causes condensate formation in this area. Condensate blockage in this area causes an additional pressure drop that weakens the effective parameters of production, such as permeability. Reservoir rock wettability alteration to gas-wet through chemical treatment is one of the solutions to produce these condensates and eliminate condensate blockage in the area. In this study, an anionic fluorinated surfactant was synthesized and used for chemical treatment and carbonate rock wettability alteration. The synthesized surfactant was characterized by Fourier transform infrared spectroscopy and thermogravimetric analysis. Then, using surface tension tests, its critical micelle concentration (CMC) was determined. Contact angle experiments on chemically treated sections with surfactant solutions and spontaneous imbibition were performed to investigate the wettability alteration. Surfactant adsorption on porous media was calculated using flooding. Finally, the surfactant foamability was investigated using a Ross–Miles foam generator. According to the results, the synthesized surfactant has suitable thermal stability for use in gas condensate reservoirs. A CMC of 3500?ppm was obtained for the surfactant based on the surface tension experiments. Contact angle experiments show the ability of the surfactant to chemical treatment and wettability alteration of carbonate rocks to gas-wet so that at the constant concentration of CMC and at 373?K, the contact angles at treatment times of 30, 60, 120 and 240?min were obtained 87.94°, 93.50°, 99.79° and 106.03°, respectively. However, this ability varies at different surfactant concentrations and temperatures. The foamability test also shows the suitable stability of the foam generated by the surfactant, and a foam half-life time of 13?min was obtained for the surfactant at CMC.
机译:在气体冷凝水储存器的近井眼区中生产过程中的压降导致该区域的缩合物形成。该区域的冷凝水堵塞导致额外的压降,削弱了生产的有效参数,例如渗透性。通过化学处理的储层岩石润湿性改变是气湿性的,是生产这些缩合物的溶液之一,并在该区域中消除冷凝水堵塞。在该研究中,合成了阴离子氟化表面活性剂并用于化学处理和碳酸盐岩石润湿性改变。合成的表面活性剂的特征在于傅里叶变换红外光谱和热重分析。然后,使用表面张力测试,测定其临界胶束浓度(CMC)。进行了用表面活性剂溶液和自发性吸收的化学处理部分的接触角实验,以研究润湿性改变。使用洪水计算多孔介质上的表面活性剂吸附。最后,使用罗斯里程泡沫发生器研究了表面活性剂可发泡性。根据结果​​,合成的表面活性剂具有适当的热稳定性,用于气体冷凝水储存器。基于表面张力实验,为表面活性剂获得3500·ppm的CMC。接触角实验表明,表面活性剂的能力与碳酸盐岩的化学处理和润湿性改变,以气湿性,使得在CMC的恒定浓度和373Ω·k处,治疗时间为30,60,120和240的接触角夹出分别获得87.94°,93.50°,99.79°和106.03°。然而,这种能力在不同的表面活性剂浓度和温度下变化。可发泡性试验还显示出由表面活性剂产生的泡沫的合适稳定性,并且在CMC的表面活性剂中获得了13Ω分钟的泡沫半衰期。

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