Ammonia for power

Аммиак для энергетики
Agustín Valera-Medina, William I. F. David, Hua Xiao, Phil Bowen, M Owen-Jones
2018-09-11

ammonia combustionammonia energy vectorfuel cellshydrogen storagepower generation
A potential enabler of a low carbon economy is the energy vector hydrogen. However, issues associated with hydrogen storage and distribution are currently a barrier for its implementation. Hence, other indirect storage media such as ammonia and methanol are currently being considered. Of these, ammonia is a carbon free carrier which offers high energy density; higher than compressed air. Hence, it is proposed that ammonia, with its established transportation network and high flexibility, could provide a practical next generation system for energy transportation, storage and use for power generation. Therefore, this review highlights previous influential studies and ongoing research to use this chemical as a viable energy vector for power applications, emphasizing the challenges that each of the reviewed technologies faces before implementation and commercial deployment is achieved at a larger scale. The review covers technologies such as ammonia in cycles either for power or CO2 removal, fuel cells, reciprocating engines, gas turbines and propulsion technologies, with emphasis on the challenges of using the molecule and current understanding of the fundamental combustion patterns of ammonia blends.
1
Ammonia could enable practical energy transportation, storage, and power generation because of its flexibility and existing distribution network.
2
Ammonia is a carbon-free energy carrier with high energy density, exceeding that of compressed air, and benefits from established transportation infrastructure.
3
Hydrogen storage and distribution challenges motivate consideration of indirect energy carriers such as ammonia and methanol.
4
Large-scale deployment remains constrained by unresolved technology-specific challenges and incomplete understanding of ammonia-blend combustion behavior.
5
The review evaluates ammonia-based power technologies, including cycles, fuel cells, reciprocating engines, gas turbines, and propulsion systems.

Ammonia as an energy vector for power applications

The viability, technologies, challenges, and fundamental combustion behavior of ammonia and ammonia blends for energy transportation, storage, and power generation

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2018-09-11
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Authors
Agustín Valera-Medina
William I. F. David
Hua Xiao
Phil Bowen
M Owen-Jones
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