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Gelation and Plugging Performance of Low-Concentration Partially Hydrolyzed Polyacrylamide/Polyethyleneimine System at Moderate Temperature and in Fractured Low-Permeability Reservoir

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Publisher MDPI
Date 2024 Jun 19
PMID 38891531
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Abstract

HPAM/PEI gel is a promising material for conformance control in hydrocarbon reservoirs. However, its use in low-permeability reservoirs is limited by the high polymer concentrations present. In this study, the gelation performance of an HPAM/PEI system with HPAM < 2.0 wt.% was systematically investigated. The gelation time for HPAM concentrations ranging from 0.4 to 2.0 wt.% varied from less than 1 h to 23 days, with the highest gel strength identified as grade H. The hydrodynamic radius manifested the primary effect of HPAM on the gelation performance. Branched PEI provided superior gelation performance over linear PEI, and the gelation performance was only affected when the molecular weight of the PEI varied significantly. The optimal number ratio of the PEI-provided imine groups and the HPAM-provided carboxylic acid functional groups was approximately 1.6:1~5:1. Regarding the reservoir conditions, the temperature had a crucial effect on the hydrodynamic radius of HPAM. Salts delayed the gelation process, and the order of ionic influence was Ca > Na > K. The pH controlled the crosslinking reaction, primarily due to the protonation degree of PEI and the hydrolysis degree of HPAM, and the most suitable pH was approximately 10.5. Plugging experiments based on a through-type fracture showed that multi-slug plugging could significantly improve the plugging performance of the system, being favorable for its application in fractured low-permeability reservoirs.

References
1.
Kitao K, Norisuye T . Nanoparticle sizing by focused-beam dynamic ultrasound scattering method. Ultrasonics. 2022; 126:106807. DOI: 10.1016/j.ultras.2022.106807. View

2.
Almakimi A, Ben Ali A, Hussein I, Bai B . Evaluation of Novel Preformed Particle Gel System for Conformance Control in Mature Oil Reservoirs. Gels. 2024; 10(1). PMC: 10815741. DOI: 10.3390/gels10010070. View

3.
Dong S, Li L, Wu Y, Huang X, Wang X . Preparation and Study of Polyvinyl Alcohol Gel Structures with Acrylamide and 2-Acrylamido-2-methyl-1-propanesulfonic Acid for Application in Saline Oil Reservoirs for Profile Modification. ACS Appl Mater Interfaces. 2023; . DOI: 10.1021/acsami.2c22911. View

4.
Huang Y, Yao X, Dai C, Wu Y, Li L, Yuan B . A Supramolecular Reinforced Gel Fracturing Fluid with Low Permeability Damage Applied in Deep Reservoir Hydraulic Fracturing. Gels. 2024; 10(1). PMC: 10815564. DOI: 10.3390/gels10010002. View

5.
Lin S, Zhang Q, Wang Z, Li J . Novel Hybrid Gel-Fiber Membranes as Carriers for Lipase Catalysis Based on Electrospinning and Gelation Technology. Gels. 2024; 10(1). PMC: 10815851. DOI: 10.3390/gels10010074. View