A review of fabrication methods for biodegradable pH-Responsive nanocomposite microgels and their performance in enhanced oil recovery

Mohsen Koolivand , Mohammad Shokouhi , Morteza Esfandyari , Mahdi Koolivand salooki , Masoud Sadeghi
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Abstract

Fossil fuels continue to be the predominant source of energy globally, and with many of the world's oil reserves expected to remain productive for extended periods, there is a pressing need for enhanced oil recovery (EOR) methods to satisfy the surging demand for oil. Iran plays a pivotal role in the global oil landscape, making EOR particularly vital, as more than 50 % of oil in carbonate reservoirs remains trapped. Reservoir conformance control techniques are essential for facilitating hydrocarbon flow from the reservoir to the wellbore, especially in challenging displacement scenarios. Achieving uniform sweep efficiency and maximizing hydrocarbon production requires addressing a prevalent issue in the oil industry: excessive water production from oil wells. This phenomenon not only diminishes hydrocarbon output but also curtails reservoir productivity and economic viability while posing severe environmental risks. Among various strategies to mitigate water production, chemical solutions like polymer gel injection have emerged as effective methods for water control. Recently developed techniques, such as the injection of pH-responsive microgels, offer innovative solutions for water blocking and conformance control at reservoir depths. Microgels present several notable advantages over traditional gel injection methods. These include lower operational costs due to reduced injection pressure, which minimizes mechanical damage to the reservoir. Additionally, microgels offer lower material costs and the benefit of reversible swelling, allowing for adjustments through acid washing. However, the successful application of microgels does necessitate an initial acid pre-flush step to lower the pH of the porous medium, which can escalate operational costs. Furthermore, the effective deployment of microgels is contingent upon various factors, including the site and timing of their application, the design of the injection strategy, the parameters governing the injection process, and the microgels' performance under diverse reservoir conditions. These considerations are crucial for optimizing the efficiency and effectiveness of microgel-based interventions in EOR.
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可生物降解 pH 值响应纳米复合微凝胶的制造方法及其在提高石油采收率方面的性能综述
化石燃料仍然是全球最主要的能源来源,由于世界上许多石油储量预计将长期保持高产,因此迫切需要采用提高石油采收率(EOR)的方法来满足对石油日益增长的需求。伊朗在全球石油格局中起着举足轻重的作用,因此提高石油采收率尤为重要,因为碳酸盐岩储层中 50% 以上的石油仍处于滞留状态。储层一致性控制技术对于促进碳氢化合物从储层流向井筒至关重要,尤其是在具有挑战性的位移情况下。要实现均匀的扫油效率并最大限度地提高碳氢化合物产量,就必须解决石油行业普遍存在的一个问题:油井产水量过高。这种现象不仅会降低碳氢化合物的产量,还会降低油藏的生产力和经济可行性,同时带来严重的环境风险。在各种减少产水量的策略中,聚合物凝胶注入等化学解决方案已成为有效的控水方法。最近开发的技术,如注入 pH 值响应型微凝胶,为油藏深度的水封堵和一致性控制提供了创新的解决方案。与传统的凝胶注入方法相比,微凝胶具有几个显著优势。这些优势包括:由于注入压力降低,对储层的机械损伤最小,从而降低了运营成本。此外,微凝胶还具有材料成本低、可逆溶胀等优点,可通过酸洗进行调整。不过,要成功应用微凝胶,必须先进行酸预冲洗,以降低多孔介质的 pH 值,这可能会增加运营成本。此外,微凝胶的有效应用还取决于多种因素,包括应用地点和时间、注入策略设计、注入过程参数以及微凝胶在不同储层条件下的性能。这些考虑因素对于优化基于微凝胶的干预措施在 EOR 中的效率和效果至关重要。
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来源期刊
CiteScore
8.40
自引率
0.00%
发文量
100
审稿时长
33 weeks
期刊介绍: The journal has a particular interest in publishing papers on the unique issues facing chemical engineering taking place in countries that are rich in resources but face specific technical and societal challenges, which require detailed knowledge of local conditions to address. Core topic areas are: Environmental process engineering • treatment and handling of waste and pollutants • the abatement of pollution, environmental process control • cleaner technologies • waste minimization • environmental chemical engineering • water treatment Reaction Engineering • modelling and simulation of reactors • transport phenomena within reacting systems • fluidization technology • reactor design Separation technologies • classic separations • novel separations Process and materials synthesis • novel synthesis of materials or processes, including but not limited to nanotechnology, ceramics, etc. Metallurgical process engineering and coal technology • novel developments related to the minerals beneficiation industry • coal technology Chemical engineering education • guides to good practice • novel approaches to learning • education beyond university.
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