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Carbon Dioxide Sequestration and Related Technologies ed. by Ying (Alice) Wu, John J. Carroll, Zhimin Du PDF eBook €1 buy download

"Carbon Dioxide Sequestration and Related Technologies" ed. by Ying (Alice) Wu, John J. Carroll, Zhimin Du
Advances in Natural Gas Engineering
Sсrivеnеr Publishing, Wilеу | 2011 | ISBN: 0470938765 1118175549 1118175530 9781118175538 9780470938768 | 510 pages | PDF | 22 MB

This volume presents some of the latest information on these processes covering physical properties, operations, design, reservoir engineering, and geochemistry for AGI and the related technologies. The book provides a base of knowledge.

Carbon dioxide sequestration is a technology that is being explored to curb the anthropogenic emission of CO2 into the atmosphere. Carbon dioxide has been implicated in the global climate change and reducing them is a potential solution.

The injection of carbon dioxide for enhanced oil recovery (EOR) has the duel benefit of sequestering the CO2 and extending the life of some older fields. Sequestering CO2 and EOR have many shared elements that make them comparable.

Contents
Introduction The Three Sisters - CCS, AGI, and EOR
Section 1: Data and Correlation
1. Prediction of Acid Gas Dew Points in the Presence of Water and Volatile Organic Compounds
2. Phase Behavior of China Reservoir Oil at Different C02 Injected Concentrations
3. Viscosity and Density Measurements for Sour Gas Fluids at High Temperatures and Pressures
4. Acid Gas Viscosity Modeling with the Expanded Fluid Viscosity Correlation
5. Evaluation and Improvement of Sour Property Packages in Unisim Design
6. Compressibility Factor of High C02-Content Natural Gases: Measurement and Correlation
Section 2: Process Engineering
7. Analysis of Acid Gas Injection Variables
8. Glycol Dehydration as a Mass Transfer Rate Process
9. Carbon Capture Using Amine-Based Technology
10. Dehydration-through-Compression (DTC): Is ItAdequate? A Tale of Three Gases
11. Diaphragm Pumps Improve Efficiency of Compressing Acid Gas and C02
Section 3: Reservoir Engineering
12. Acid Gas Injection in the Permian and San Juan Basins: Recent Case Studies from New Mexico
13. C02 and Acid Gas Storage in Geological Formations as Gas Hydrate
14. Complex Flow Mathematical Model of Gas Pool with Sulfur Deposition
Section 4: Enhanced Oil Recovery (EOR)
15. Enhanced Oil Recovery Project: Dunvegan C Pool
16. C02 Flooding as an EOR Method for Low Permeability Reservoirs
17. Pilot Test Research on C02 Drive in Very Low Permeability Oil Field of in Daqing Changyuan
18. Operation Control of C02-Driving in Field Site. Site Test in Wellblock Shu 101, Yushulin Oil Field, Daqing
19. Application of Heteropolysaccharide in Acid Gas Injection
Section 5: Geology and Geochemistry
20. Impact of S02 and NO on Carbonated Rocks Submitted to a Geological Storage of C02: An Experimental Study
21. Geochemical Modeling of Huff 'N' Puff Oil Recovery With C02 at the Northwest Mcgregor Oil Field
22. Comparison of C02 and Acid Gas Interactions with reservoir fluid and Rocks at Williston Basin Conditions
Section 6: Well Technology
23. Well Cement Aging in Various H2S-C02 Fluids at High Pressure and High Temperature: Experiments and Modelling
24. Casing Selection and Correlation Technology for Ultra-Deep, Ultra- High Pressure, High H2S Gas Wells
25. Coupled Mathematical Model of Gas Migration in Cemented Annulus with Mud Column in Acid Gas Well
Section 7: Corrosion
26. Study on Corrosion Resistance of L245/825 Lined Steel Pipe Welding Gap in H2S+C02 Environment
26.1 Introduction
26.2 Welding Process of Lined Steel Pipe
26.3 Corrosion Test Method of Straight and Ring Welding Gaps of L245/825 Lined Steel Pipe
26.4 Corrosion Test Results of Straight and Ring Welding Gaps of 1245/825 Lined Steel Pipe
26.5 Conclusions
26.6 Acknowledgments
References
Index
with TOC BookMarkLinks



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Carbon Dioxide Sequestration and Related Technologies ed. by Ying (Alice) Wu, John J. Carroll, Zhimin Du PDF eBook
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