Key Laboratory of Unconventional Oil & Gas Development (China University of Petroleum (East China)), Ministry of Education, Qingdao 266580, PR China; College of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, PR China.
Key Laboratory of Unconventional Oil & Gas Development (China University of Petroleum (East China)), Ministry of Education, Qingdao 266580, PR China; College of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, PR China.
Int J Biol Macromol. 2024 Oct;277(Pt 3):134445. doi: 10.1016/j.ijbiomac.2024.134445. Epub 2024 Aug 2.
As a widely used water-based fracturing fluid, the performance of hydroxypropyl guar gum fracturing fluid is closely related to the degree of crosslinking, the quantitative characterization of which can reveal a detailed crosslinking mechanism and guide the preparation of fracturing fluid gels with an excellent performance. However, the commonly used high-temperature rheology method for evaluating the performance of fracturing fluids only qualitatively reflects the degree of crosslinking. In this study, low-field nuclear magnetic resonance (LF-NMR) was used to characterize the degree of crosslinking in guar gum fracturing fluid gels. The spin-spin relaxation time of the H proton in guar gum was molecularly analyzed using LF-NMR. The viscoelastic properties met the requirements when the crosslinking degree of the gel was 88-94 %. The transformation of the linear structure into a membrane structure during the crosslinking process of the guar gum fracturing fluid was confirmed by freeze-drying and scanning electron microscopy (SEM) from a microscopic perspective. The changing trend of the microstructure and viscoelastic properties of the fracturing fluid gel under different crosslinker dosages was consistent with changes in the degree of crosslinking. The LF-NMR test process is non-destructive to the gel structure, and the test results demonstrate good accuracy and repeatability.
作为一种广泛使用的水基压裂液,羟丙基胍胶压裂液的性能与交联度密切相关,定量表征交联度可以揭示详细的交联机制,并指导具有优异性能的压裂液凝胶的制备。然而,常用于评估压裂液性能的高温流变学方法只能定性地反映交联度。在本研究中,低场核磁共振(LF-NMR)用于表征胍胶压裂液凝胶的交联度。使用 LF-NMR 对胍胶中 H 质子的自旋-自旋弛豫时间进行了分子分析。当凝胶的交联度为 88-94%时,满足粘弹性要求。通过冷冻干燥和扫描电子显微镜(SEM)从微观角度证实了胍胶压裂液在交联过程中线性结构向膜结构的转变。不同交联剂用量下压裂液凝胶的微观结构和粘弹性的变化趋势与交联度的变化一致。LF-NMR 测试过程对凝胶结构无破坏性,测试结果具有良好的准确性和重复性。