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用于堵漏的氧化石墨烯基自修复凝胶的制备与性能评价

Preparation and Performance Evaluation of Graphene Oxide-Based Self-Healing Gel for Lost Circulation Control.

作者信息

Li Wenzhe, Luo Pingya, Wang Xudong

机构信息

Petroleum Engineering School, Southwest Petroleum University, Chengdu 610500, China.

Engineering Technology Research Institute, PetroChina Southwest Oil & Gas Field Company, Chengdu 610017, China.

出版信息

Polymers (Basel). 2025 Jul 22;17(15):1999. doi: 10.3390/polym17151999.

Abstract

Lost circulation is a major challenge in oil and gas drilling operations, severely restricting drilling efficiency and compromising operational safety. Conventional bridging and plugging materials rely on precise particle-to-fracture size matching, resulting in low success rates. Self-healing gels penetrate loss zones as discrete particles that progressively swell, accumulate, and self-repair in integrated gel masses to effectively seal fracture networks. Self-healing gels effectively overcome the shortcomings of traditional bridging agents including poor adaptability to fractures, uncontrollable gel formation of conventional downhole crosslinking gels, and the low strength of conventional pre-crosslinked gels. This work employs stearyl methacrylate (SMA) as a hydrophobic monomer, acrylamide (AM) and acrylic acid (AA) as hydrophilic monomers, and graphene oxide (GO) as an inorganic dopant to develop a GO-based self-healing organic-inorganic hybrid plugging material (SG gel). The results demonstrate that the incorporation of GO significantly enhances the material's mechanical and rheological properties, with the SG-1.5 gel exhibiting a rheological strength of 3750 Pa and a tensile fracture stress of 27.1 kPa. GO enhances the crosslinking density of the gel network through physical crosslinking interactions, thereby improving thermal stability and reducing the swelling ratio of the gel. Under conditions of 120 °C and 6 MPa, SG-1.5 gel demonstrated a fluid loss volume of only 34.6 mL in 60-80-mesh sand bed tests. This gel achieves self-healing within fractures through dynamic hydrophobic associations and GO-enabled physical crosslinking interactions, forming a compact plugging layer. It provides an efficient solution for lost circulation control in drilling fluids.

摘要

漏失是石油和天然气钻井作业中的一个重大挑战,严重限制了钻井效率并危及作业安全。传统的桥接和堵漏材料依赖于颗粒与裂缝尺寸的精确匹配,导致成功率较低。自愈合凝胶以离散颗粒的形式渗透到漏失层,这些颗粒逐渐膨胀、聚集,并在整合的凝胶体中自我修复,从而有效地密封裂缝网络。自愈合凝胶有效地克服了传统桥接剂的缺点,包括对裂缝的适应性差、传统井下交联凝胶的凝胶形成不可控以及传统预交联凝胶的强度低。这项工作采用甲基丙烯酸硬脂酯(SMA)作为疏水单体,丙烯酰胺(AM)和丙烯酸(AA)作为亲水单体,以及氧化石墨烯(GO)作为无机掺杂剂,开发了一种基于GO的自愈合有机-无机杂化堵漏材料(SG凝胶)。结果表明,GO的加入显著提高了材料的力学和流变性能,SG-1.5凝胶的流变强度为3750 Pa,拉伸断裂应力为27.1 kPa。GO通过物理交联相互作用提高了凝胶网络的交联密度,从而提高了热稳定性并降低了凝胶的溶胀率。在120℃和6 MPa的条件下,SG-1.5凝胶在60-80目砂床试验中的滤失量仅为34.6 mL。这种凝胶通过动态疏水缔合和GO介导的物理交联相互作用在裂缝内实现自愈合,形成致密的封堵层。它为钻井液漏失控制提供了一种有效的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f78/12349317/d156850db24f/polymers-17-01999-g001.jpg

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