Green ammonia: catalysis, combustion and utilization strategies
Downloads
Published
DOI:
https://doi.org/10.58414/SCIENTIFICTEMPER.2023.14.1.33Keywords:
Ammonia combustion, Ammonia synthesis reactor, Ammonia Utilization, Electr-chemical ammonia synthesis, Fuel cells, Green ammonia, Green fuels, Green hydrogen, Renewable Energy, Thermo-chemical ammonia synthesis.Dimensions Badge
Issue
Section
Engineering is about observing physical conditions and being able to mathematically model the systems and solve problems for optimal design parameters using well-defined mathematical approaches. The government of India’s creation of a market for green hydrogen and ammonia promotes the development of newer technologies for producing and using these green fuels. One of the most popular processes for manufacturing ammonia is the Haber-Bosch process of 1904, which needs a high temperature of around 500°F and a high pressure of 150 to 300 bar. A study on the synthesis of green ammonia from nitrogen and water using renewable energy sources like sun and wind was discovered for the first time in 2013. Start-ups worldwide are developing a tabletop hydrogen generator technology that breaks ammonia and creates high-grade hydrogen suitable for fuel cells.Abstract
How to Cite
Downloads
Similar Articles
- Arvind K Shukla, Balaji V, Dharani R, M Ananthi, R Padmavathy, Romala V. Srinivas, Precision agriculture predictive modeling and sensor analysis for enhanced crop monitoring , The Scientific Temper: Vol. 14 No. 04 (2023): The Scientific Temper
- Neeru Garg, B.R. Jaipal, Harshvardhan Singh, Impacts of anthropogenic activities on the behavior of Indian fox (Vulpes bengalensis) in the Thar desert , The Scientific Temper: Vol. 14 No. 02 (2023): The Scientific Temper
- Sangeeta Modi, P Usha, Fault analysis in hybrid microgrid for developing a suitable protection scheme , The Scientific Temper: Vol. 14 No. 01 (2023): The Scientific Temper
- Sadanand Maurya, Manikant Tripathi, Karunesh Kumar Tiwari, Awadhesh Kumar Shukla, Analyses of water quality using different physico-chemical parameters: A study of Saryu river , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- Ravikiran K, Neerav Nishant, M Sreedhar, N.Kavitha, Mathur N Kathiravan, Geetha A, Deep learning methods and integrated digital image processing techniques for detecting and evaluating wheat stripe rust disease , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- A. R. Jasmine Begum, M. Parveen, S. Latha, IoT based home automation with energy management , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- B.V.Thacker, G.P. Vadodaria, G.V. Priyadarshi, M.H. Trivedi, Biopolymer-based fly ash-activated zeolite for the removal of chromium from acid mine drainage , The Scientific Temper: Vol. 14 No. 04 (2023): The Scientific Temper
- S. Vnuchko, O. Batrymenko, О. Ткach, М. Karashchuk, M. Volkivskyi, Models of interaction between business and government in the conditions of the European integration course of Ukraine , The Scientific Temper: Vol. 14 No. 03 (2023): The Scientific Temper
- Kusum Sharma, Ranjan Singh, Prem N Tripathi, Isolation and enumeration of bacteria from common green vegetables available in nearby market at Ayodhya , The Scientific Temper: Vol. 14 No. 01 (2023): The Scientific Temper
- Purnendu B. Acharjee, Bhupaesh Ghai, Muniyandy Elangovan, S. Bhuvaneshwari, Ravi Rastogi, P. Rajkumar, Exploring AI-driven approaches to drug discovery and development , The Scientific Temper: Vol. 14 No. 04 (2023): The Scientific Temper
<< < 13 14 15 16 17 18 19 20 21 22 > >>
You may also start an advanced similarity search for this article.

