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Coalbed Methane: Scientific, Environmental and Economic Evaluation

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Cover of 'Coalbed Methane: Scientific, Environmental and Economic Evaluation'

Table of Contents

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    Book Overview
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    Chapter 1 Coal Seam Gas in Queensland — From There to Where?
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    Chapter 2 Developing a New Coal Seam Gas Regime for Queensland
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    Chapter 3 The Fairview Coal Seam Gasfield, Comet Ridge, Queensland Australia
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    Chapter 4 Cost Benefit Analysis of Coalbed Methane Recovery Activities in Australia and New Zealand- Implications for Commercial Projects and Government Policy
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    Chapter 5 The Use of Monte Carlo Analysis to Evaluate Prospective Coalbed Methane Properties
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    Chapter 6 Defining Coalbed Methane Exploration Fairways: An Example from the Piceance Basin, Rocky Mountain Foreland, Western United States
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    Chapter 7 Improving Coal Gas Recovery with Microbially Enhanced Coalbed Methane
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    Chapter 8 Coalbed Methane Exploration in Structurally Complex Terrain
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    Chapter 9 Coalbed Methane Exploration Results of the Liulin Permit in China
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    Chapter 10 Residual Gas Content of Coal in the Light of Observations from the Upper Silesian Coal Basin, Poland
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    Chapter 11 Coal Composition and Mode of Maturation, a Determining Factor in Quantifying Hydrocarbon Species Generated
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    Chapter 12 The Relation between Gas in Coal Seams and Artificial Coalification Gas Under Hydrothermal Pressure Systems
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    Chapter 13 Coal Bed Gas Content and Gas Undersaturation
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    Chapter 14 Higher Hydrocarbon Gases in Southern Sydney Basin Coals
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    Chapter 15 Source and Timing of Coal Seam Gas Generation in Bowen Basin Coals
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    Chapter 16 The Development of an Understanding of the Origins of the Sydney and Bowen Basin Gases
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    Chapter 17 Mineral-Catalyzed Formation of Natural Gas during Coal Maturation
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    Chapter 18 The Role of In-Situ Stress in Coalbed Methane Exploration
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    Chapter 19 Coalbed Methane: Scientific, Environmental and Economic Evaluation
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    Chapter 20 The Microstructure of Pore Space in Coals of Different Rank
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    Chapter 21 Coalbed Methane Characteristics of the Mist Mountain Formation, Southern Canadian Cordillera: Effect of Shearing and Oxidation
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    Chapter 22 Decrease of Desorption Intensity of Coalbed Methane due to Hydraulic Fracturing
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    Chapter 23 Coal Seam Gas Emissions from Ostrava — Karvina Collieries in the Czech Republic during Mining and after Mines Closure
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    Chapter 24 Countermeasures and Researches for Prevention of Methane Emission into the Atmosphere in a Japanese Coal Mine
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    Chapter 25 Modeling the Hydrothermal Generation of Coals and Coal-Seam Gas
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    Chapter 26 Simulating the Conductive and Hydrothermal Maturation of Coal and Coal Seam Gas in the Bowen Basin, Australia
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    Chapter 27 Modelling of Petroleum Formation Associated with Heat Transfer due to Hydrodynamic Processes
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    Chapter 28 Floral Influences on the Petroleum Source Potential of New Zealand Coals
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    Chapter 29 The Influence of Depositional and Maturation Factors on the Three-Dimensional Distribution of Coal Rank Indicators and Hydrocarbon Source Potential in the Gunnedah Basin, New South Wales
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    Chapter 30 The Physics and Efficiency of Petroleum Expulsion from Coal
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    Chapter 31 Jurassic Coals and Carbonaleans Mudstones: The Oil Source in the Junggar and Turpan-Hami Basins, China
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    Chapter 32 Examples of the methane exchange between litho- and atmosphere: the coal bearing Ruhr basin, Germany
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    Chapter 33 Desorption as a Criterion for the Estimation of Methane Content in a Coal Seam
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    Chapter 34 Grading of Reserves and Resources of Coalbed Gas in China
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    Chapter 35 Anhydride Theory
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    Chapter 36 Looking Back on Development History of Coalbed Methane in China
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    Chapter 37 The Study of the Influence of Pressure on Coalbed Permeability
Attention for Chapter 7: Improving Coal Gas Recovery with Microbially Enhanced Coalbed Methane
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Chapter title
Improving Coal Gas Recovery with Microbially Enhanced Coalbed Methane
Chapter number 7
Book title
Coalbed Methane: Scientific, Environmental and Economic Evaluation
Published by
Springer Netherlands, September 1999
DOI 10.1007/978-94-017-1062-6_7
Book ISBNs
978-9-04-815217-9, 978-9-40-171062-6
Authors

Andrew R. Scott

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 22 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 22 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 5 23%
Student > Master 4 18%
Student > Doctoral Student 3 14%
Student > Bachelor 2 9%
Student > Ph. D. Student 2 9%
Other 1 5%
Unknown 5 23%
Readers by discipline Count As %
Engineering 5 23%
Agricultural and Biological Sciences 3 14%
Chemical Engineering 2 9%
Environmental Science 2 9%
Earth and Planetary Sciences 2 9%
Other 3 14%
Unknown 5 23%