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用于提高采收率的响应性纤维素基凝胶微球的制备与表征

Preparation and Characterization of Responsive Cellulose-Based Gel Microspheres for Enhanced Oil Recovery.

作者信息

Yin Peng, Shi Fang, Luo Mingjian, Wu Jingchun, Zhao Bo, Zhang Chunlong, Shen Yi, Chen Yanbing

机构信息

College of Chemistry and Chemical Engineering, Northeast Petroleum University, Daqing 163318, China.

Daqing Oilfield Company Ltd Natural Gas Sub-Company, Daqing 163000, China.

出版信息

Gels. 2024 Aug 13;10(8):532. doi: 10.3390/gels10080532.

Abstract

As an important means to enhance oil recovery, ternary composite flooding (ASP flooding for short) technology has achieved remarkable results in Daqing Oilfield. Alkalis, surfactants and polymers are mixed in specific proportions and injected into the reservoir to give full play to the synergistic effect of each component, which can effectively enhance the fluidity of crude oil and greatly improve the oil recovery. At present, the technology for further improving oil recovery after ternary composite flooding is not mature and belongs to the stage of technical exploration. The presence of alkaline substances significantly alters the reservoir's physical properties and causes considerable corrosion to the equipment used in its development. This is detrimental to both the environment and production. Therefore, it is necessary to develop green displacement control agents. In the reservoir environment post-ASP flooding, 2-(methylamino)ethyl methacrylate and glycidyl methacrylate were chosen as monomers to synthesize a polymer responsive to alkali, and then grafted with cellulose nanocrystals to form microspheres of alkali-resistant swelling hydrogel. Cellulose nanocrystals (CNCs) modified with functional groups and other materials were utilized to fabricate hydrogel microspheres. The product's structure was characterized and validated using Fourier transform infrared spectroscopy and X-ray diffraction. The infrared spectrum revealed characteristic absorption peaks of CNCs at 1165 cm, 1577 cm, 1746 cm, and 3342 cm. The diffraction spectrum corroborated the findings of the infrared analysis, indicating that the functional modification occurred on the CNC surface. After evaluating the swelling and erosion resistance of the hydrogel microspheres under various alkaline conditions, the optimal particle size for compatibility with the target reservoir was determined to be 6 μm. The potential of cellulose-based gel microspheres to enhance oil recovery was assessed through the evaluation of Zeta potential and laboratory physical simulations of oil displacement. The study revealed that the absolute value of the Zeta potential for gel microspheres exceeds 30 in an alkaline environment with pH values ranging from 7 to 14, exhibiting a phenomenon where stronger alkalinity correlates with a greater absolute value of Zeta potential. The dispersion stability spans from good to excellent. The laboratory oil displacement simulation experiment was conducted using a cellulose-based gel microsphere system following weak alkali ASP flooding within the pH value range from 7 to 10. The experimental interventions yielded recovery rates of 2.98%, 3.20%, 3.31%, and 3.38%, respectively. The study indicates that cellulose-based gel microspheres exhibit good adaptability in alkaline reservoirs. This research offers a theoretical foundation and experimental approaches to enhance oil recovery techniques post-ASP flooding.

摘要

作为提高采收率的重要手段,三元复合驱油(简称ASP驱油)技术在大庆油田取得了显著成效。碱、表面活性剂和聚合物按特定比例混合后注入油藏,以充分发挥各组分的协同效应,可有效提高原油流动性,大幅提高采收率。目前,三元复合驱后进一步提高采收率的技术尚不成熟,处于技术探索阶段。碱性物质的存在显著改变了油藏的物理性质,并对其开发所用设备造成相当大的腐蚀。这对环境和生产都不利。因此,有必要开发绿色驱油控制剂。在ASP驱后的油藏环境中,选择甲基丙烯酸2-(甲氨基)乙酯和甲基丙烯酸缩水甘油酯作为单体合成一种对碱有响应的聚合物,然后与纤维素纳米晶接枝形成耐碱溶胀水凝胶微球。利用官能团改性的纤维素纳米晶(CNCs)等材料制备水凝胶微球。使用傅里叶变换红外光谱和X射线衍射对产物结构进行表征和验证。红外光谱显示CNCs在1165 cm、1577 cm、1746 cm和3342 cm处有特征吸收峰。衍射光谱证实了红外分析的结果,表明官能团改性发生在CNC表面。在评估水凝胶微球在各种碱性条件下的溶胀和抗侵蚀性能后,确定与目标油藏相容的最佳粒径为6μm。通过评估Zeta电位和实验室驱油物理模拟,评估了纤维素基凝胶微球提高采收率的潜力。研究表明,在pH值为7至14的碱性环境中,凝胶微球的Zeta电位绝对值超过30,呈现出碱性越强Zeta电位绝对值越大的现象。分散稳定性从良好到优异。在pH值为7至10的范围内,采用基于纤维素的凝胶微球体系在弱碱ASP驱后进行了实验室驱油模拟实验。实验干预分别产生了2.98%、3.20%、3.31%和3.38%的采收率。研究表明,纤维素基凝胶微球在碱性油藏中表现出良好的适应性。本研究为提高ASP驱后采收率技术提供了理论基础和实验方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb1c/11353638/b141df15ab90/gels-10-00532-g001.jpg

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