Innovative Experimental Design for the Evaluation of Nanofluid-Based Solvent as a Hybrid Technology for Optimizing Cyclic Steam Stimulation Applications

Worldwide gas emissions are being strictly regulated, therefore processes to reduce steam injection for enhanced oil recovery (EOR) require a deeper analysis to identify the means to contribute to environmental impact reduction. Lately the usage of additives such as a solvent for steam injection pro...

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Main Authors: Hugo Alejandro García-Duarte, María Carolina Ruiz-Cañas, Romel Antonio Pérez-Romero
Format: Article
Language:English
Published: MDPI AG 2022-12-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/16/1/373
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author Hugo Alejandro García-Duarte
María Carolina Ruiz-Cañas
Romel Antonio Pérez-Romero
author_facet Hugo Alejandro García-Duarte
María Carolina Ruiz-Cañas
Romel Antonio Pérez-Romero
author_sort Hugo Alejandro García-Duarte
collection DOAJ
description Worldwide gas emissions are being strictly regulated, therefore processes to reduce steam injection for enhanced oil recovery (EOR) require a deeper analysis to identify the means to contribute to environmental impact reduction. Lately the usage of additives such as a solvent for steam injection processes has taken a new interest due to its positive impact on improving oil recovery and energy efficiency and reducing greenhouse gas emissions. In that sense, the use of nanoparticles in thermal EOR has been explored due to its impact on avoiding the volatilization of the solvent, offering greater contact with the oil in the reservoir. Nanoparticles have well-known effects on asphaltenes adsorption, aquathermolysis reactions, oil upgrading, and improving energy efficiencies. This article presents a summary and ranking of the nanoparticles evaluated in nanofluid-based solvent for steam processes, specifically in the catalysis of aquathermolysis reactions. A novel experimental design is proposed for the characterization, formulation (based on catalytic activity and dispersion), and evaluation of solvent improved with nanoparticles. This new approach will be used as a guideline for the evaluation of nanoparticles dispersed in hydrocarbon-type solvents as a hybrid technology to improve steam injection processes.
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spelling doaj.art-ba1fc22cdb8544519232263775cfcbd72023-11-16T15:18:17ZengMDPI AGEnergies1996-10732022-12-0116137310.3390/en16010373Innovative Experimental Design for the Evaluation of Nanofluid-Based Solvent as a Hybrid Technology for Optimizing Cyclic Steam Stimulation ApplicationsHugo Alejandro García-Duarte0María Carolina Ruiz-Cañas1Romel Antonio Pérez-Romero2ECOPETROL S.A.—Instituto Colombiano del Petróleo, Piedecuesta 681011, ColombiaTIP Colombia, Piedecuesta 681011, ColombiaECOPETROL S.A.—Instituto Colombiano del Petróleo, Piedecuesta 681011, ColombiaWorldwide gas emissions are being strictly regulated, therefore processes to reduce steam injection for enhanced oil recovery (EOR) require a deeper analysis to identify the means to contribute to environmental impact reduction. Lately the usage of additives such as a solvent for steam injection processes has taken a new interest due to its positive impact on improving oil recovery and energy efficiency and reducing greenhouse gas emissions. In that sense, the use of nanoparticles in thermal EOR has been explored due to its impact on avoiding the volatilization of the solvent, offering greater contact with the oil in the reservoir. Nanoparticles have well-known effects on asphaltenes adsorption, aquathermolysis reactions, oil upgrading, and improving energy efficiencies. This article presents a summary and ranking of the nanoparticles evaluated in nanofluid-based solvent for steam processes, specifically in the catalysis of aquathermolysis reactions. A novel experimental design is proposed for the characterization, formulation (based on catalytic activity and dispersion), and evaluation of solvent improved with nanoparticles. This new approach will be used as a guideline for the evaluation of nanoparticles dispersed in hydrocarbon-type solvents as a hybrid technology to improve steam injection processes.https://www.mdpi.com/1996-1073/16/1/373nanomaterialscore-shell nanohybridsolventsnaphthacyclic steam stimulationenhanced oil recovery
spellingShingle Hugo Alejandro García-Duarte
María Carolina Ruiz-Cañas
Romel Antonio Pérez-Romero
Innovative Experimental Design for the Evaluation of Nanofluid-Based Solvent as a Hybrid Technology for Optimizing Cyclic Steam Stimulation Applications
Energies
nanomaterials
core-shell nanohybrid
solvents
naphtha
cyclic steam stimulation
enhanced oil recovery
title Innovative Experimental Design for the Evaluation of Nanofluid-Based Solvent as a Hybrid Technology for Optimizing Cyclic Steam Stimulation Applications
title_full Innovative Experimental Design for the Evaluation of Nanofluid-Based Solvent as a Hybrid Technology for Optimizing Cyclic Steam Stimulation Applications
title_fullStr Innovative Experimental Design for the Evaluation of Nanofluid-Based Solvent as a Hybrid Technology for Optimizing Cyclic Steam Stimulation Applications
title_full_unstemmed Innovative Experimental Design for the Evaluation of Nanofluid-Based Solvent as a Hybrid Technology for Optimizing Cyclic Steam Stimulation Applications
title_short Innovative Experimental Design for the Evaluation of Nanofluid-Based Solvent as a Hybrid Technology for Optimizing Cyclic Steam Stimulation Applications
title_sort innovative experimental design for the evaluation of nanofluid based solvent as a hybrid technology for optimizing cyclic steam stimulation applications
topic nanomaterials
core-shell nanohybrid
solvents
naphtha
cyclic steam stimulation
enhanced oil recovery
url https://www.mdpi.com/1996-1073/16/1/373
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AT mariacarolinaruizcanas innovativeexperimentaldesignfortheevaluationofnanofluidbasedsolventasahybridtechnologyforoptimizingcyclicsteamstimulationapplications
AT romelantonioperezromero innovativeexperimentaldesignfortheevaluationofnanofluidbasedsolventasahybridtechnologyforoptimizingcyclicsteamstimulationapplications