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Sustainable Shale Oil and Gas : Analytical Chemistry, Geochemistry, and Biochemistry Methods.

Author: Vikram Rao; Rob Knight
Publisher: San Diego : Elsevier Science, 2016.
Edition/Format:   eBook : Document : EnglishView all editions and formats
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Rao, Vikram.
Sustainable Shale Oil and Gas : Analytical Chemistry, Geochemistry, and Biochemistry Methods.
San Diego : Elsevier Science, ©2016
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Vikram Rao; Rob Knight
ISBN: 9780128103906 0128103906
OCLC Number: 960753636
Notes: Stage-Level Application: Sweet Spot Identification and Production Profiling.
Description: 1 online resource (189 pages)
Contents: Front Cover; Sustainable Shale Oil and Gas; Copyright Page; Dedication; Contents; List of Contributors; Foreword; Preface; Acknowledgments; 1 Background; Oil; Natural Gas; Environmental Considerations; I. Air Emissions; 2 Fugitive Methane and Emissions From Flaring; Sources of Methane Leakage; Producing Wells; Transmission Lines; Beyond the City Gate; Methane Hydrates and Their Role in Global Warming; Flared Gas; Quantifying Fugitive Methane; Climate Change Impact of Natural Gas Substitution of Fuels; References; 3 Detection of Methane and Amelioration; ARPA-E and EDF Programs for Detection. Improved and/or Lower Cost Components of the SystemMobile Systems; Other Methods; Green Completions; Alternatives to Flaring Gas; Syngas Production Using a Diesel Engine; References; 4 Particulate Matter and Volatile Organic Chemicals; Particulate Matter; Small Low-Cost Particulate Matter Measuring Devices; Volatile Organic Compounds; Portable High-Performance Mass Spectrometer; References; II. The Potential for Contaminating Ground Water; 5 Methane in Groundwater; Potential for Gas Migration; Distinguishing Between Sources of Methane; Carbon Isotope Monitoring; Hydrogen Isotope Monitoring. Monitoring C2+ SpeciesCoal Seam Gas; Investigations of Methane Migration to Aquifers; References; 6 Potential for Liquid Contamination of Groundwater; Flowback Water; Disposition of Flowback and Produced Water; Investigations of Groundwater Contamination; Possible Contamination from Handling and Storage; Conclusions; References; III. Improving Economics of Recovery; 7 Illuminating the Reservoir; Formation Evaluation of Conventional Reservoirs; The Four Steps; Identify Potential Hydrocarbon-Bearing Portions; Estimate the Porosity of the Rock; Estimate the Resistivity of the Rock. Estimate the Density Porosity of the RockLog Evaluation; Formation Evaluation of Unconventional Reservoirs; Brittleness; Coring and Core Analysis; Analyzing Unconventional Reservoir Core; Digital Rock Physics; Case Study of Digital Rock Physics From the Permian Basin; Dual-Energy X-Ray CT Imaging and Petrophysics; Analysis of Core Plugs; Rotary Sidewall Samples and Drill Cuttings; Permeability From 3-D FIB-SEM; Upscaling From SEM to Whole Core; References; 8 Improving Net Recovery of Fluids; Natural Fractures; Heterogeneity in Horizontal Wellbores; Understanding and Harnessing Heterogeneity. Methods to Improve RecoveryUsing the Bit as a Sensor; Analyzing Cuttings; Wellbore Logging and Microseismic Monitoring; Secondary Recovery; Refracturing; Conclusion; References; 9 Subsurface DNA Sequencing: A New Tool for Reservoir Characterization; Microbes in Rocks and Elsewhere; Microbes as Forensic Markers; Workflows for DNA Sequencing in the Subsurface; Sample Acquisition; Data Analysis; Microbiome Data Analysis Measures; Alpha Diversity; Beta Diversity; Group Means; Source Tracker; Application of DNA Sequencing in the Subsurface.

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