Fighting Global Warming - Photocatalytic Reduction of Carbon dioxide
Details
Global warming, the most threatening problem to be solved by the scientists to meet the Kyoto Protocol of the United Nations Framework Convention on Climate Change and to conserve the rapidly exhausting fuel reserves, stimulated the current research towards artificial photosynthesis. It is an undeniable fact that carbon dioxide accounts for the largest share of the world s greenhouse gas emissions by its alarming increase in the atmosphere. From this standpoint, the development methods to convert carbon dioxide to more useful organic compounds inexpensively is highly desirable. Photocatalytic reduction of carbon dioxide has been reported to be the best among available remediation methods from the viewpoint of the direct use of solar energy, which is clean and inexhaustible. This book deals with the methods to improve the photoefficiency of commercially available titania for photocatalytic reduction of carbon dioxide. In this view, a series of noble metals viz., Ru, Rh, Pd, and Pt and other transition metals viz., Fe and Cu doped titania, with various doping levels, and supported on various porous and nonporous materials, were tested for photocatalytic reduction of carbon dioxide.
Autorentext
Dr. Natarajan Sasirekha is Assistant Professor of Chemistry at Anna University of Technology Tiruchirappalli, India, where she has been on the faculty since 2009. She received her PhD in heterogeneous catalysis from Anna University, Chennai, India. Her primary research and professional activities are in photocatalysts & mesoporous molecular sieves.
Weitere Informationen
- Allgemeine Informationen
- Sprache Englisch
- Untertitel Development of doped and supported titania towards photocatalytic reduction of carbon dioxide
- Autor Natarajan Sasirekha , Kannan Shanthi
- Titel Fighting Global Warming - Photocatalytic Reduction of Carbon dioxide
- Veröffentlichung 26.10.2011
- ISBN 3845478829
- Format Kartonierter Einband
- EAN 9783845478821
- Jahr 2011
- Größe H220mm x B150mm x T14mm
- Gewicht 328g
- Herausgeber LAP LAMBERT Academic Publishing
- Anzahl Seiten 208
- Auflage Aufl.
- GTIN 09783845478821