Evaluation of the synergistic effect of a complex enzyme–formulated nano oil displacement agent to enhance low–permeability heavy oil recovery

Enzyme–enhanced oil recovery is an emerging technology; however, the underlying mechanisms governing this process remain incompletely elucidated. In this paper, an enzyme nano–oil displacement agent has been formulated by combining enzymes (lipase, cellulase, esterase, and protease) with our previously formulated composite nano–oil displacement agent to evaluate oil displacement efficiency. The following results were obtained: (1) enzymes addition could change the wettability to a more water–wet state with increasing magnitude of 3.6 % than nano–oil displacing agent, and which is not a significant mechanism for oil displacement; (2) enzyme addition resulted in a further reduction in interfacial tension, with a magnitude 13.4% lower than that of the nano–oil displacing agent, and which is also not a significant mechanism for oil displacement; (3) additional oil could be recovered by adding enzymes through syringe flooding experiments; (4) Core displacement experiments have confirmed that enzymes added can increase tertiary oil recovery by 5.5 % (average 35.4 %) compared with nano–oil displacing agent (average 29.9 %); (5) enzymes added could enhance imbibition efficiency with increasing magnitude of 4.1% than nano–oil displacing agent; and (6) the fundamental mechanism underlying the enhanced oil flowability lies in the degradation of long–chain alkanes into shorter–chain alkanes and functionalized metabolites. This paper presents a promising solution for tertiary oil recovery by integrating enzymes, biopolymers, nanoparticles, and surfactants to enhance low–permeability (< 50 mD) heavy oil (< 500 mPa. s) recovery.

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Publication Details

Journal
Petroleum Geoscience
Published
2026-09-15
DOI
https://doi.org/10.1144/petgeo2025-133
Primary Topic
Enhanced Oil Recovery Techniques
Type
article
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article

Evaluation of the synergistic effect of a complex enzyme–formulated nano oil displacement agent to enhance low–permeability heavy oil recovery

Min Wan, Zailin Chen, Hongfeng Zhou, Lihui Ma et al.
Petroleum Geoscience
Enhanced Oil Recovery Techniques
article

Evaluation of the synergistic effect of a complex enzyme–formulated nano oil displacement agent to enhance low–permeability heavy oil recovery

Min Wan, Zailin Chen, Hongfeng Zhou, Lihui Ma, Shengjun Xu, Xianfeng Cheng, Qiulian Yu, Qian Li, Zhengde Li, Limin Chai, Xindong Liu
article en

Abstract

Enzyme–enhanced oil recovery is an emerging technology; however, the underlying mechanisms governing this process remain incompletely elucidated. In this paper, an enzyme nano–oil displacement agent has been formulated by combining enzymes (lipase, cellulase, esterase, and protease) with our previously formulated composite nano–oil displacement agent to evaluate oil displacement efficiency. The following results were obtained: (1) enzymes addition could change the wettability to a more water–wet state with increasing magnitude of 3.6 % than nano–oil displacing agent, and which is not a significant mechanism for oil displacement; (2) enzyme addition resulted in a further reduction in interfacial tension, with a magnitude 13.4% lower than that of the nano–oil displacing agent, and which is also not a significant mechanism for oil displacement; (3) additional oil could be recovered by adding enzymes through syringe flooding experiments; (4) Core displacement experiments have confirmed that enzymes added can increase tertiary oil recovery by 5.5 % (average 35.4 %) compared with nano–oil displacing agent (average 29.9 %); (5) enzymes added could enhance imbibition efficiency with increasing magnitude of 4.1% than nano–oil displacing agent; and (6) the fundamental mechanism underlying the enhanced oil flowability lies in the degradation of long–chain alkanes into shorter–chain alkanes and functionalized metabolites. This paper presents a promising solution for tertiary oil recovery by integrating enzymes, biopolymers, nanoparticles, and surfactants to enhance low–permeability (< 50 mD) heavy oil (< 500 mPa. s) recovery.

Petroleum Geoscience
Planetary Science Institute (US), Chengdu University of Technology (CN), Yunnan Vocational College of Mechanical and Electrical Technology (CN)
Openalex Percentile: Top 14%
Enhanced Oil Recovery Techniques
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