Open access peer-reviewed Edited Volume

Carbon Dioxide Chemistry, Capture and Oil Recovery

Edited by Iyad Karamé

Lebanese University, Lebanon

Co-editors:

Janah Shaya

Univerzitná Nemocnica Louisa Pasteura, Slovakia

Fossil fuels still need to meet the growing demand of global economic development, yet they are often considered as one of the main sources of the CO2 release in the atmosphere. CO2, which is the primary greenhouse gas (GHG), is periodically exchanged among the land surface, ocean, and atmosphere where various creatures absorb and produce it daily. However, the balanced processes of producing and consuming the CO2 by nature are unfortunately faced by the anthropogenic release of CO2. Decreasing the emissions of these greenhouse gases is becoming more urgent. Therefore, carbon sequestration and storage (CSS) of CO2, its utilization in oil recovery, as well as its conversion into fuels and chemicals emerge as active options and potential strategies to mitigate CO2 emissions and climate change, energy crises, and challenges in the storage of energy.

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Carbon Dioxide Chemistry, Capture and Oil RecoveryEdited by Iyad Karamé

Published: August 16th 2018

DOI: 10.5772/intechopen.68466

ISBN: 978-1-78923-575-3

Print ISBN: 978-1-78923-574-6

Copyright year: 2018

Books open for chapter submissions

6145 Total Chapter Downloads

2 Dimensions Citations

chaptersDownloads

Open access peer-reviewed

1. Introductory Chapter: An Outline of Carbon Dioxide Chemistry, Uses and Technology

By Janah Shaya, Hassan Srour and Iyad Karamé

311

Open access peer-reviewed

2. Electrochemical/Photochemical CO2 Reduction Catalyzed by Transition Metal Complexes

By Hitoshi Ishida

559

Open access peer-reviewed

3. Carbon Dioxide Conversion to Methanol: Opportunities and Fundamental Challenges

By Sajeda A. Al-Saydeh and Syed Javaid Zaidi

1887

Open access peer-reviewed

4. Effect of Overlapping Fe/TiO2 Coated on Netlike Glass Disc and Cu Disc on CO2 Reduction

By Akira Nishimura

200

Open access peer-reviewed

5. CO2 Reforming with CH4 via Plasma Catalysis System

By Wei Chieh Chung and Moo Been Chang

378

Open access peer-reviewed

6. Understanding Interaction Capacity of CO2 with Organic Compounds at Molecular Level: A Theoretical Approach

By Pham Ngoc Khanh and Nguyen Tien Trung

269

Open access peer-reviewed

7. [11C]Carbon Dioxide: Starting Point for Labeling PET Radiopharmaceuticals

By Lingyun Yang, Peter J. H. Scott and Xia Shao

293

Open access peer-reviewed

8. Solvents for Carbon Dioxide Capture

By Fernando Vega, Mercedes Cano, Sara Camino, Luz M. Gallego Fernández, Esmeralda Portillo and Benito Navarrete

643

Open access peer-reviewed

9. Advances in Porous Adsorbents for CO2 Capture and Storage

By Arindam Modak and Subhra Jana

470

Open access peer-reviewed

10. Process Analytical Technology for CO2 Capture

By M.H. Wathsala N. Jinadasa, Klaus-J. Jens and Maths Halstensen

299

Open access peer-reviewed

11. Carbon Dioxide Use in High-Pressure Extraction Processes

By Vânia Maria Borges Cunha, Marcilene Paiva da Silva, Wanessa Almeida da Costa, Mozaniel Santana de Oliveira, Fernanda Wariss Figueiredo Bezerra, Anselmo Castro de Melo, Rafael Henrique Holanda Pinto, Nelio Teixeira Machado, Marilena Emmi Araujo and Raul Nunes de Carvalho Junior

414

Open access peer-reviewed

12. A Review on the Application of Enhanced Oil/Gas Recovery through CO2 Sequestration

By Abdelmalek Atia and Kamal Mohammedi

429

Edited Volume and chapters are indexed in

  • Worldcat
  • OpenAIRE
  • Google Scholar
  • AZ ebsco
  • Base
  • CNKI

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