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Numerical modelling of biophysicochemical effects on multispecies reactive transport in porous media involving Pseudomonas putida for potential microbial enhanced oil recovery application
Published in Elsevier Ltd
2016
Volume: 211
   
Pages: 348 - 359
Abstract
pH and resident time of injected slug plays a critical role in characterizing the reservoir for potential microbial enhanced oil recovery (MEOR) application. To investigate MEOR processes, a multispecies (microbes-nutrients) reactive transport model in porous media was developed by coupling kinetic and transport model. The present work differs from earlier works by explicitly determining parametric values required for kinetic model by experimental investigations using Pseudomonas putida at different pH conditions and subsequently performing sensitivity analysis of pH, resident time and water saturation on concentrations of microbes, nutrients and biosurfactant within reservoir. The results suggest that nutrient utilization and biosurfactant production are found to be maximum at pH 8 and 7.5 respectively. It is also found that the sucrose and biosurfactant concentrations are highly sensitive to pH rather than reservoir microbial concentration, while at larger resident time and water saturation, the microbial and nutrient concentrations were lesser due to enhanced dispersion. © 2016 Elsevier Ltd.
About the journal
JournalData powered by TypesetBioresource Technology
PublisherData powered by TypesetElsevier Ltd
Open AccessNo
Concepts (52)
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    Bacteria
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    Biomolecules
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    Microorganisms
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    Nutrients
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    Oil well flooding
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    pH
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    Porous materials
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    Sensitivity analysis
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    Surface active agents
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    Experimental investigations
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    MICROBIAL ENHANCED OIL RECOVERIES
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    MICROBIAL ENHANCED OIL RECOVERY (MEOR)
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    MULTISPECIES REACTIVE TRANSPORTS
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    Porous medium
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    Pseudomonas putida
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    REACTIVE TRANSPORT MODELING
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    REACTIVE TRANSPORT MODELLING
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    Enhanced recovery
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    Biosurfactant
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    Oil
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    Sucrose
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    Water
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    Biofuel
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    Culture medium
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    Surfactant
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    Bacterium
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    Concentration (composition)
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    ENHANCED OIL RECOVERY
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    Microbial activity
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    Numerical model
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    Physicochemical property
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    Reactive transport
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    Article
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    Bacterial growth
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    DISPERSION
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    Kinetic parameters
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    Kinetics
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    Microorganism
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    Nonhuman
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    NUTRIENT CONCENTRATION
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    Porosity
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    Priority journal
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    Reservoir
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    Chemistry
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    Growth, development and aging
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    Metabolism
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    Theoretical model
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    Biofuels
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    Culture media
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    Hydrogen-ion concentration
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    Models, theoretical
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    Surface-active agents