首页> 外文期刊>Journal of natural gas science and engineering >Wettability alteration of carbonate rocks from liquid-wetting to ultra gas-wetting using TiO2, SiO2 and CNT nanofluids containing fluorochemicals, for enhanced gas recovery
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Wettability alteration of carbonate rocks from liquid-wetting to ultra gas-wetting using TiO2, SiO2 and CNT nanofluids containing fluorochemicals, for enhanced gas recovery

机译:使用含氟化合物的TiO2,SiO2和CNT纳米流体,将碳酸盐岩的润湿性从液体润湿改变为超气体润湿,以提高气体回收率

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Wettability alteration of near-wellbore region in gas condensate reservoirs by chemical stimulation is known to be an effective method for decreasing liquid accumulation and increasing the fluid mobility that results in improving the well's deliverability. This paper reports on liquid-repellency of TiO2, SiO2 and CNT nanostructures, applied for wettability alteration of carbonate reservoir rock. The characterization of nanoparticles synthesized via sol gel process was evaluated by SEM, FTIR, XRD and TEM analyses. It was observed that the liquid drop of water or n-decane imbibed instantly into the liquid-wetting untreated rock. The contact angle of water droplet on the rocks aged in nanofluids containing each of these rough nanoparticles in alcoholic medium changed significantly from 0 degrees to 161 degrees, 164 degrees and 163 degrees, respectively. It was supported by self-cleaning properties while the wetting behavior of n-decane was remained unchanged. In order to add oil repellency feature to the existing nanofluids as well, low surface energy agents like PTFE, Trichloro (1H, 1H, 2H, 2H-perfluorooctyl) silane and 2, 2, 2-Trifluoroethanol were added selectively to the solutions. The wettability of n-decane droplet on the rocks treated with these TiO2, SiO2 and CNT nanofluids increased from 0 degrees to 144 degrees, 151 degrees and 147 degrees, respectively. SEM images verify adsorption of nanoparticles on the rock and the roughness of nano-textured surfaces. Surface chemical composition of the treated carbonate rocks with nanofluids was determined by EDX analysis. The alteration of rock wettability to gas-wetness state was also confirmed by imbibition test. Moreover, thermal stability of nanofluids at 160 degrees C were quite appropriate to be used practically. (C) 2015 Elsevier B.V. All rights reserved.
机译:众所周知,通过化学增产作用改变凝析气藏附近井筒区域的润湿性是减少液体积聚和增加流体流动性的有效方法,从而改善了井的产​​能。本文报道了TiO2,SiO2和CNT纳米结构的疏液性,用于碳酸盐岩储集层的润湿性改变。通过SEM,FTIR,XRD和TEM分析评估了通过溶胶凝胶法合成的纳米颗粒的表征。观察到水滴或正癸烷的液滴立即吸收到未润湿液体的岩石中。在含有这些粗糙纳米颗粒的纳米流体在酒精介质中老化的岩石上,水滴的接触角分别从0度显着变化为161度,164度和163度。它具有自我清洁性能,而正癸烷的润湿行为保持不变。为了也为现有的纳米流体增加拒油特性,将低表面能剂(例如PTFE),三氯(1H,1H,2H,2H-全氟辛基)硅烷和2,2,2-三氟乙醇选择性添加到溶液中。用这些TiO2,SiO2和CNT纳米流体处理过的岩石上正癸烷液滴的润湿性分别从0度增加到144度,151度和147度。 SEM图像验证了纳米颗粒在岩石上的吸附以及纳米纹理表面的粗糙度。通过EDX分析确定了具有纳米流体的处理过的碳酸盐岩石的表面化学组成。吸水试验也证实了岩石润湿性向气湿状态的变化。而且,纳米流体在160℃的热稳定性非常适合于实际使用。 (C)2015 Elsevier B.V.保留所有权利。

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