Yang Yang, Wang Youqi, Liu Yiheng, Liu Ping
State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective Development, Beijing 100083, China.
Research and Development Center for the Sustainable Development of Continental Sandstone Mature Oilfield by National Energy Administration, Beijing 100083, China.
Polymers (Basel). 2024 Apr 10;16(8):1036. doi: 10.3390/polym16081036.
Polymer flooding has achieved considerable success in medium-high permeability reservoirs. However, when it comes to low-permeability reservoirs, polymer flooding suffers from poor injectivity due to the large molecular size of the commonly used high-molecular-weight (high-MW) partially hydrolyzed polyacrylamides (HPAM). Herein, an amphiphilic polymer (LMWAP) with a low MW (3.9 × 10 g/mol) was synthesized by introducing an amphiphilic monomer (Allyl-OP-10) and a chain transfer agent into the polymerization reaction. Despite the low MW, LMWAP exhibited better thickening capability in brine than its counterparts HPAM-1800 (MW = 1.8 × 10 g/mol) and HPAM-800 (MW = 8 × 10 g/mol) due to the intermolecular hydrophobic association. LMWAP also exhibited more significant shear-thinning behavior and stronger elasticity than the two counterparts. Furthermore, LMWAP possesses favorable oil-water interfacial activity due to its amphiphilicity. The oil-water interfacial tension (IFT) could be reduced to 0.88 mN/m and oil-in-water (O/W) emulsions could be formed under the effect of LMWAP. In addition, the reversible hydrophobic association endows the molecular chains of LMWAP with dynamic association-disassociation transition ability. Therefore, despite the similar hydrodynamic sizes in brine, LMWAP exhibited favorable injectivity under low-permeability conditions, while the counterpart HPAM-1800 led to fatal plugging. Furthermore, LMWAP could enhance oil recovery up to 21.5%, while the counterpart HPAM-800 could only enhance oil recovery by up to 11.5%, which could be attributed to the favorable interfacial activity of LMWAP.
聚合物驱在中高渗透油藏中取得了显著成功。然而,对于低渗透油藏,由于常用的高分子量(高MW)部分水解聚丙烯酰胺(HPAM)分子尺寸较大,聚合物驱注入性较差。在此,通过将两亲性单体(烯丙基-OP-10)和链转移剂引入聚合反应中,合成了一种低MW(3.9×10 g/mol)的两亲聚合物(LMWAP)。尽管MW较低,但由于分子间疏水缔合作用,LMWAP在盐水中表现出比其同类产品HPAM-1800(MW = 1.8×10 g/mol)和HPAM-800(MW = 8×10 g/mol)更好地增稠能力。LMWAP还表现出比这两种同类产品更显著的剪切变稀行为和更强的弹性。此外,由于其两亲性,LMWAP具有良好的油水界面活性。在LMWAP的作用下,油水界面张力(IFT)可降至0.88 mN/m,并可形成水包油(O/W)乳液。此外,可逆的疏水缔合赋予LMWAP分子链动态缔合-解离转变能力。因此,尽管在盐水中具有相似的流体力学尺寸,但LMWAP在低渗透条件下表现出良好的注入性,而同类产品HPAM-1800则导致严重堵塞。此外,LMWAP可将原油采收率提高至21.5%,而同类产品HPAM-800只能将原油采收率提高至11.5%,这可归因于LMWAP良好的界面活性。