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Nanopartacles for Enhanced Oil Recovery: Influence of pH on Alumsnum-Cross-iinked Partially Hydroiyzed Polyacrylamide-Investigation by Rheology and NMR

机译:用于增强的溢油的纳米粒子:pH对alumsnum交联部分水解的聚丙烯酰胺的影响通过流变和NMR

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New methods are continuously being evaluated for Enhanced Oil Recovery (EOR), Nanoparticle flooding is an intriguing new approach in which one of the main applications is microscopic diversion. Linked polymer solution (LPS) is a nanoparticle system that consists of partially hydroiyzed polyacrylamide (HPAM) cross-linked by alummum(III). The source of aluminum is an aluminum citrate (AlCit) complex, where titrate serves as a carrier ligand. The large size and flexibility of HPAM as well as the multicomponent species of AlCit present at most relevant reservoir conditions make the system highly complex and challenging to characterize. In the literature, there is a lack of systematic and consistent data describing the various chemical species involved in LPS. This work used nuclear magnetic resonance (NMR) spectroscopy and dynamic rheology to investigate the reaction between HPAM and At~(3+) as a function of solution pH. The results of NMR spectra indicate that AlCit is more reactive at near neutral pH and cross-linking reactions should preferably be performed at this condition. Structural conformation and viscoelastic properties of the HPAM-Al complex appear to be dominated by the protonation—deprotonation state of the carboxylic acid groups as result of pH changes.
机译:持续评估新方法,用于增强的采油(EOR),纳米粒子洪水是一种有趣的新方法,其中主要应用是微观转移。连接的聚合物溶液(LPS)是纳米颗粒体系,由Alummum(III)交联的部分氢化聚丙烯酰胺(HPAM)组成。铝的来源是柠檬酸铝(Alcit)复合物,其中滴定用作载体配体。 HPAM的大尺寸和灵活性以及大多数相关储层条件存在的alcit的多组分物种使系统具有高度复杂和具有挑战性的特征。在文献中,缺乏系统和一致的数据,描述了LPS中的各种化学物质。这项工作用了核磁共振(NMR)光谱和动态流变学,以研究HPAM和〜(3+)之间的反应作为溶液pH的函数。 NMR光谱的结果表明Alcit在接近中性pH下更具反应,并且优选在该条件下进行交联反应。由于pH变化,HPAM-Al络合物的结构构象和粘弹性似乎由羧酸基团的质子化 - 去质子化状态构成。

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