Basile / Rahimpour | Progresses in Ammonia | Buch | 978-0-323-88501-0 | www.sack.de

Buch, Englisch, 356 Seiten, Format (B × H): 191 mm x 235 mm, Gewicht: 613 g

Basile / Rahimpour

Progresses in Ammonia

Science, Technology and Membranes: Applications and use
Erscheinungsjahr 2024
ISBN: 978-0-323-88501-0
Verlag: Elsevier Inc

Science, Technology and Membranes: Applications and use

Buch, Englisch, 356 Seiten, Format (B × H): 191 mm x 235 mm, Gewicht: 613 g

ISBN: 978-0-323-88501-0
Verlag: Elsevier Inc


Progresses in Ammonia: Science, Technology and Membranes: Applications and Use covers various ammonia applications such as in sensors and devices, in dyes and cleaning, in cooling systems, in desalination, in anaerobic digestion, in terrestrial vegetation, in fabric, textile and leather products, in metals heat-treating, in acid deposition, in carbon dioxide capture, in the hydrogen production, storage and generation.

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Weitere Infos & Material


1. Clean ammonia as a potential fuel for power generators
2. Catalyst: ammonia as an energy carrier
3. Ammonia and power generation technology ammonia combustion
4. Catalytic ammonia decomposition and hydrogen separation and purification

5. Ammonia sensors and devices

6. Ammonia application in dyes and cleaning

7. Ammonia application in cooling systems

8. Ammonia application in desalination

9. Ammonia as oxidizing/reducing agents

10. Ammonia application in anaerobic digestion

11. Ammonia application in terrestrial vegetation

12. Ammonia application in fabric, textile and leather products

13. Ammonia application in metals heat-treating

14. Ammonia application in acid deposition

15. Ammonia application in carbon dioxide capture

16. Hydrogen production from ammonia using sodium amide

17. Ammonia application in hydrogen storage and generation

18. Ammonia application in catalytic organometallic reactions

19. Ammonia hurts and diseases: ammonia hazards (corrosion), human body systems (liver, muscles, kidney, brain, etc.).


Rahimpour, Mohammad Reza
Prof. Mohammad Reza Rahimpour is a professor in Chemical Engineering at Shiraz University, Iran. He received his Ph.D. in Chemical Engineering from Shiraz University joint with University of Sydney, Australia 1988. He started his independent career as Assistant Professor in September 1998 at Shiraz University. Prof. M.R. Rahimpour, was a Research Associate at University of California, Davis from 2012 till 2017. During his stay in University of California, he developed different reaction networks and catalytic processes such as thermal and plasma reactors for upgrading of lignin bio-oil to biofuel with collaboration of UCDAVIS. He has been a Chair of Department of Chemical Engineering at Shiraz University from 2005 till 2009 and from 2015 till 2020. Prof. M.R. Rahimpour leads a research group in fuel processing technology focused on the catalytic conversion of fossil fuels such as natural gas, and renewable fuels such as bio-oils derived from lignin to valuable energy sources. He provides young distinguished scholars with perfect educational opportunities in both experimental methods and theoretical tools in developing countries to investigate in-depth research in the various field of chemical engineering including carbon capture, chemical looping, membrane separation, storage and utilization technologies, novel technologies for natural gas conversion and improving the energy efficiency in the production and use of natural gas industries.

Basile, Angelo
Angelo Basile is a Full Professor and a leading authority in membrane science and technology. Since 2014, he has served as Full Professor in Systems, Methods and Technologies of Chemical Engineering Processes at CNR-ITM in Rende, Italy. His work covers hydrogen purification and production using membrane reactors, CO2 capture, process intensification, and the treatment of industrial effluents with advanced membrane operations. Basile has edited many scientific books and authored numerous book chapters, bridging complex research with clear knowledge for engineers and scientists. Motivated by the role of AI/ML in accelerating membrane process design and automation, he supports integrating data-driven methods for smart plants and reaction–separation optimisation.



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