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Rheology of Triamine Functionalized Silica Reinforced Polymeric Gels Developed for Conformance Control Applications

机译:开发用于一致性控制应用的三胺功能化二氧化硅增强聚合物凝胶的流变学

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摘要

Recently, cross-linked polymers such as polyacrylamide (PAM)/polyethylenimine (PEI) have been used in conformance control applications to replace conventional lost circulation materials (LCMs). The objective of this work is to introduce functionalized silica to reinforce PAM and enhance gel performance under high temperature high pressure (HTHP) conditions. A system was developed using PAM/triamine silica (TAS) combined with nanosilica (NS) to replace the conventional PEI as a cross-linker. Polymer systems consisting of 9 wt % PAM and polyacrylamide tert-butyl (PAtBA) with various concentrations of PEI, TAS, and NS (50 nm) were used to produce mature gels at 130 degrees C. The results have shown that TAS has formed a gel with code "E" on the Sydansk coding system. Adding a low concentration (1-2 wt %) of 50 nm silica has eliminated the settling of micronized TAS and produced a reinforced gelant system with code "I". The cross-linking was accomplished via an amine group similar to the PEI mechanism with the advantage of strength and stability due to the presence of silica. The increase in the gel strength of the PAM/TAS formulation depends on the amount of NS; the gel strength of the PAM/PEI system has increased from 1670 Pa to more than 9000 Pa for the PAM/TAS/NS system. The new formulation is compatible with high salinity water, and a chelating agent could be introduced to prevent formation damage.
机译:近来,诸如聚丙烯酰胺(PAM)/聚乙烯亚胺(PEI)的交联聚合物已用于一致性控制应用中,以代替传统的漏失循环材料(LCM)。这项工作的目的是引入功能化的二氧化硅,以增强PAM并增强高温高压(HTHP)条件下的凝胶性能。使用PAM /三胺二氧化硅(TAS)与纳米二氧化硅(NS)结合开发了一种系统,以取代传统的PEI作为交联剂。由9 wt%PAM和聚丙烯酰胺叔丁基(PAtBA)组成的聚合物体系具有各种浓度的PEI,TAS和NS(50 nm),用于在130摄氏度下制备成熟的凝胶。结果表明,TAS形成了Sydansk编码系统上的代码为“ E”的凝胶。添加低浓度(1-2重量%)的50 nm二氧化硅消除了微粉化TAS的沉淀,并产生了代号为“ I”的增强胶凝剂体系。交联通过类似于PEI机理的胺基完成,由于存在二氧化硅,具有强度和稳定性的优点。 PAM / TAS制剂凝胶强度的增加取决于NS的数量;对于PAM / TAS / NS系统,PAM / PEI系统的凝胶强度已从1670 Pa增加到超过9000 Pa。新配方与高盐度水兼容,可以引入螯合剂以防止地层破坏。

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  • 来源
    《Energy & fuels》 |2020年第1期|1093-1098|共6页
  • 作者

  • 作者单位

    Qatar Univ Coll Engn Gas Proc Ctr POB 2713 Doha Qatar;

    Univ Oklahoma Dept Petr & Geol Engn Norman OK 73019 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 05:21:31

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