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首页> 外文期刊>Journal of Applied Polymer Science >Preparation and characterization of nanocomposite hydrogels based on polyacrylamide for enhanced oil recovery applications
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Preparation and characterization of nanocomposite hydrogels based on polyacrylamide for enhanced oil recovery applications

机译:基于聚丙烯酰胺的纳米复合水凝胶的制备与表征,用于提高采油率

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In the present work, attempts have been made to prepare nanocomposite type of hydrogels (NC gels) by crosslinking the polyacrylamide/montmorillonite (Na-MMT) clay aqueous solutions with chromium (111). The Xray diffraction patterns of the NC gels exhibited a significant increase in d(001) spacing between the clay layers, indicating the formation of intercalated as well as exfoliated type of morphology. Exfoliation of the clay layers through Out the gel network was found to be predominated, which evidences the high interaction between the polyacrylamide segments and montmorillonite layers. Gelation time as well as variation of viscoelastic parameters such as storage modulus (G') of the gel network during gelation process at 75 degrees C was studied and followed by rheomechanical spectroscopy (RMS). The NC gels prepared with lower crosslinker concentration showed higher strength and elastic moduli-is compared with the similar but unfilled polyacrylamide gel. This distinct characteristic of the NC gels yields a gel network structure with high resistance towards syneresis at high temperature in the presence of the oil reservoir formation water. The effects of the composition, such as clay content, crosslinker concentration, and also water salinity upon the gelation rate, gel strength as well as rate of syneresis have been investigated. To optimize the injectivity of the intercalated polyacrylamide solution before the onset of gelation with the gel strength of the final developed gel, sodium lactate was employed as retarder. This was found to be effective to balance these two characteristics of the NC gels, which are aimed to be used for water shut-off and as profile modifier in enhanced oil recovery (EOR) process during water flooding process. The nanocomposite gels showed Much more elasticity and extensibility at low crosslinker concentration compared with the similar but unfilled gel, which makes the NC gels Suitable as an in-depth profile modifier, and also as an oil displacing agent in the heterogeneous oil reservoir in chemical EOR. Effects of the clay content on the thermal stability of the gel network have also been investigated by thermogravimetric analysis (TGA). Scanning electron microscopy (SEM) has been performed upon the NC-gel samples. (c) 2006 Wiley Periodicals, Inc.
机译:在本工作中,已经尝试通过将聚丙烯酰胺/蒙脱石(Na-MMT)粘土水溶液与铬(111)交联来制备纳米复合型水凝胶(NC凝胶)。 NC凝胶的X射线衍射图谱显示粘土层之间的d(001)间距显着增加,表明形成了插层和脱落型形态。发现通过Out凝胶网络剥落粘土层是主要的,这表明聚丙烯酰胺链段和蒙脱土层之间的高相互作用。研究了在75摄氏度凝胶化过程中的凝胶化时间以及粘弹性参数(例如凝胶网络的储能模量(G'))的变化,然后进行了流变力学光谱(RMS)研究。与类似但未填充的聚丙烯酰胺凝胶相比,以较低的交联剂浓度制备的NC凝胶显示出更高的强度和弹性模量。 NC凝胶的这一独特特性可在储油层中存在水的条件下,在高温下产生对脱水收缩具有高抵抗力的凝胶网络结构。已经研究了组成例如粘土含量,交联剂浓度以及水盐度对胶凝速率,胶凝强度以及脱水收缩率的影响。为了利用最终显影的凝胶的凝胶强度来优化在凝胶化开始之前插入的聚丙烯酰胺溶液的可注射性,使用乳酸钠作为阻滞剂。已发现这有效地平衡了NC凝胶的这两个特性,这两个特性旨在用于堵水,并在注水过程中用作提高采油率(EOR)过程中的调剖剂。与类似但未填充的凝胶相比,纳米复合凝胶在低交联剂浓度下显示出更大的弹性和可延展性,这使得NC凝胶既适合用作深层调剖剂,也适合用作化学EOR中非均质油藏中的驱油剂。 。还通过热重分析(TGA)研究了粘土含量对凝胶网络的热稳定性的影响。已对NC凝胶样品进行了扫描电子显微镜(SEM)。 (c)2006年Wiley Periodicals,Inc.

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