Key Laboratory of Unconventional Oil & Gas Development (China University of Petroleum (East China)), Ministry of Education, Qingdao 266580, PR China; School 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; School of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, PR China.
Adv Colloid Interface Sci. 2022 Mar;301:102617. doi: 10.1016/j.cis.2022.102617. Epub 2022 Feb 21.
Improved oil recovery (IOR) includes enhanced oil recovery (EOR) and other technologies (i.e. fracturing, water injection optimization, etc.), have become important methods to increase the oil/gas production in petroleum industry. However, conventional flooding systems always encounter the problems of low efficiency, high cost and complicated synthetic procedures for harsh reservoirs conditions. In recent decades, the supramolecular interactions are introduced into IOR processes to simplify the synthetic procedures, alter their structures and properties with bespoke functionalities and responsiveness suitable for different conditions. Herein, we primarily review the fundamentals of several supramolecular interactions, including hydrophobic association, hydrogen bond, electrostatic interaction, host-guest recognition, metal-ligand coordination and dynamic covalent bond from intrinsic principles and extrinsic functions. Then, the descriptions of supramolecular interactions in IOR processes from categories and advances are focused on the following variables: polymer, surfactant, surfactant/polymer (SP) complex for EOR and viscoelasticity surfactant (VES) for clean hydraulic fracturing aspects. Finally, the field applications, challenges and prospects for supramolecular interactions in IOR processes are involved and systematically addressed. The development of supramolecular interactions can open the way toward adaptive and evolutive IOR technology, a further step towards the cost-effective production of petroleum industry.
提高石油采收率(IOR)包括强化采油(EOR)和其他技术(例如压裂、注水优化等),已成为增加石油/天然气产量的重要方法。然而,常规驱油系统在苛刻油藏条件下始终存在效率低、成本高和合成工艺复杂的问题。近几十年来,超分子相互作用被引入到 IOR 过程中,以简化合成工艺,改变其结构和性能,赋予其适合不同条件的定制功能和响应性。在此,我们主要从内在原理和外在功能方面综述了几种超分子相互作用的基础,包括疏水缔合、氢键、静电相互作用、主客体识别、金属-配体配位和动态共价键。然后,从类别和进展方面重点介绍了超分子相互作用在提高采收率过程中的应用,包括聚合物、表面活性剂、用于强化采油的表面活性剂/聚合物(SP)复合物和用于清洁水力压裂的粘弹性表面活性剂(VES)。最后,涉及并系统地讨论了超分子相互作用在 IOR 过程中的现场应用、挑战和前景。超分子相互作用的发展为适应性和进化性的 IOR 技术开辟了道路,朝着更具成本效益的石油工业生产迈进了一步。