Synergistic effect of polymer and graphene oxide nanocomposite in heterogeneous layered porous media: a pore-scale EOR Study

Abstract Graphene oxide (GO) nanocomposites offer a novel method for enhancing oil recovery, leveraging their unique properties to improve recovery efficiency. This study investigates the potential of GO and polymer nanocomposites (GOPN) for enhanced oil recovery (EOR) in stratified and heterogeneou...

Full description

Saved in:
Bibliographic Details
Main Authors: M. Iravani, M. Simjoo, A. H. Molaei
Format: Article
Language:English
Published: SpringerOpen 2025-01-01
Series:Journal of Petroleum Exploration and Production Technology
Subjects:
Online Access:https://doi.org/10.1007/s13202-024-01910-8
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1823863277439942656
author M. Iravani
M. Simjoo
A. H. Molaei
author_facet M. Iravani
M. Simjoo
A. H. Molaei
author_sort M. Iravani
collection DOAJ
description Abstract Graphene oxide (GO) nanocomposites offer a novel method for enhancing oil recovery, leveraging their unique properties to improve recovery efficiency. This study investigates the potential of GO and polymer nanocomposites (GOPN) for enhanced oil recovery (EOR) in stratified and heterogeneous reservoirs. A series of glass micro-model experiments was conducted at ambient conditions to evaluate the performance of different injection scenarios. The findings demonstrated that incorporating GO nanosheets into water flooding, even at low concentration (100 ppm), increased oil recovery by 3% compared to conventional water flooding. This improvement was attributed to GO nanosheet adsorption onto grain surfaces. Furthermore, increasing the GO concentration to 500 ppm led to an additional 8% oil recovery, potentially due to enhanced sweep efficiency and better passage through pore throats. Polymer flooding achieved a significant oil recovery of 77%, and GOPN injection yielded an even higher recovery, reaching almost 87%. This 10% increase suggests a synergistic effect between the polymer and GO nanosheets. Additionally, GOPN’s ability to alter wettability towards a more water-wet state contributed to improve oil detachment and more oil recovery, a critical factor in optimizing EOR techniques. These findings highlight the potential of GOPN as a promising EOR technique in stratified reservoirs. Compared to previous studies, this work explored the performance of GOPN at low GO concentrations (100 ppm). It demonstrated a significant improvement in oil recovery (as much as 10%) compared to polymer flooding alone, paving the way for further research on GOPN for EOR applications and more efficient oil production.
format Article
id doaj-art-74122752871a49308387a27c5ddfeb0e
institution Kabale University
issn 2190-0558
2190-0566
language English
publishDate 2025-01-01
publisher SpringerOpen
record_format Article
series Journal of Petroleum Exploration and Production Technology
spelling doaj-art-74122752871a49308387a27c5ddfeb0e2025-02-09T12:13:21ZengSpringerOpenJournal of Petroleum Exploration and Production Technology2190-05582190-05662025-01-0115111610.1007/s13202-024-01910-8Synergistic effect of polymer and graphene oxide nanocomposite in heterogeneous layered porous media: a pore-scale EOR StudyM. Iravani0M. Simjoo1A. H. Molaei2Faculty of Petroleum and Natural Gas Engineering, Sahand University of TechnologyFaculty of Petroleum and Natural Gas Engineering, Sahand University of TechnologyFaculty of Petroleum and Natural Gas Engineering, Sahand University of TechnologyAbstract Graphene oxide (GO) nanocomposites offer a novel method for enhancing oil recovery, leveraging their unique properties to improve recovery efficiency. This study investigates the potential of GO and polymer nanocomposites (GOPN) for enhanced oil recovery (EOR) in stratified and heterogeneous reservoirs. A series of glass micro-model experiments was conducted at ambient conditions to evaluate the performance of different injection scenarios. The findings demonstrated that incorporating GO nanosheets into water flooding, even at low concentration (100 ppm), increased oil recovery by 3% compared to conventional water flooding. This improvement was attributed to GO nanosheet adsorption onto grain surfaces. Furthermore, increasing the GO concentration to 500 ppm led to an additional 8% oil recovery, potentially due to enhanced sweep efficiency and better passage through pore throats. Polymer flooding achieved a significant oil recovery of 77%, and GOPN injection yielded an even higher recovery, reaching almost 87%. This 10% increase suggests a synergistic effect between the polymer and GO nanosheets. Additionally, GOPN’s ability to alter wettability towards a more water-wet state contributed to improve oil detachment and more oil recovery, a critical factor in optimizing EOR techniques. These findings highlight the potential of GOPN as a promising EOR technique in stratified reservoirs. Compared to previous studies, this work explored the performance of GOPN at low GO concentrations (100 ppm). It demonstrated a significant improvement in oil recovery (as much as 10%) compared to polymer flooding alone, paving the way for further research on GOPN for EOR applications and more efficient oil production.https://doi.org/10.1007/s13202-024-01910-8Enhanced oil recoveryGraphene oxideNanocompositeMicro-modelPolymerPore-scale
spellingShingle M. Iravani
M. Simjoo
A. H. Molaei
Synergistic effect of polymer and graphene oxide nanocomposite in heterogeneous layered porous media: a pore-scale EOR Study
Journal of Petroleum Exploration and Production Technology
Enhanced oil recovery
Graphene oxide
Nanocomposite
Micro-model
Polymer
Pore-scale
title Synergistic effect of polymer and graphene oxide nanocomposite in heterogeneous layered porous media: a pore-scale EOR Study
title_full Synergistic effect of polymer and graphene oxide nanocomposite in heterogeneous layered porous media: a pore-scale EOR Study
title_fullStr Synergistic effect of polymer and graphene oxide nanocomposite in heterogeneous layered porous media: a pore-scale EOR Study
title_full_unstemmed Synergistic effect of polymer and graphene oxide nanocomposite in heterogeneous layered porous media: a pore-scale EOR Study
title_short Synergistic effect of polymer and graphene oxide nanocomposite in heterogeneous layered porous media: a pore-scale EOR Study
title_sort synergistic effect of polymer and graphene oxide nanocomposite in heterogeneous layered porous media a pore scale eor study
topic Enhanced oil recovery
Graphene oxide
Nanocomposite
Micro-model
Polymer
Pore-scale
url https://doi.org/10.1007/s13202-024-01910-8
work_keys_str_mv AT miravani synergisticeffectofpolymerandgrapheneoxidenanocompositeinheterogeneouslayeredporousmediaaporescaleeorstudy
AT msimjoo synergisticeffectofpolymerandgrapheneoxidenanocompositeinheterogeneouslayeredporousmediaaporescaleeorstudy
AT ahmolaei synergisticeffectofpolymerandgrapheneoxidenanocompositeinheterogeneouslayeredporousmediaaporescaleeorstudy