Novel carbon-free innovation in centralised ammonia cracking for a sustainable hydrogen economy: the hybrid air-volt ammonia cracker (HAVAC) process
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Author(s)
Eluwah, Chidozie
Fennell, Paul S
Type
Journal Article
Abstract
The Hybrid Air-Volt Ammonia Cracker (HAVAC) represents a novel approach to centralised ammonia cracking
for hydrogen production, enhancing both efficiency and scalability. This novel process integrates renewable
electricity and autothermal operation to crack blue or green ammonia, achieving a high thermal efficiency of
94% to 95%. HAVAC demonstrates impressive ammonia conversion rates up to 99.4% and hydrogen yields
between 84% and 99.5%, with hydrogen purity of 99.99% meeting ISO 14687:2019 standards.
Key innovations include the process's flexibility to operate in three modes: 100% renewable electricity, 100%
air autothermal, or a hybrid approach. This versatility optimizes energy use and adapts to varying conditions.
The Gas Heated Cracker (GHC) within HAVAC efficiently reduces energy demands by utilizing waste heat.
Modelled using the Aspen Plus Simulator and validated against experimental data, HAVAC's economic analysis
indicates a levelized cost of hydrogen (LCOH) between $3.80/kg-H₂ and $6.00/kg-H₂. The process's
environmental benefits include reduced greenhouse gas emissions and effective NOx waste management.
Future research will focus on scaling up, reducing ammonia feed cost, optimizing catalysts, and enhancing
waste management. HAVAC offers substantial promise for advancing hydrogen production and supporting a
sustainable, carbon-free hydrogen economy. The technical and economic data generated by this analysis will
assist decision-makers and researchers in advancing the pursuit of a carbon-free hydrogen economy.
for hydrogen production, enhancing both efficiency and scalability. This novel process integrates renewable
electricity and autothermal operation to crack blue or green ammonia, achieving a high thermal efficiency of
94% to 95%. HAVAC demonstrates impressive ammonia conversion rates up to 99.4% and hydrogen yields
between 84% and 99.5%, with hydrogen purity of 99.99% meeting ISO 14687:2019 standards.
Key innovations include the process's flexibility to operate in three modes: 100% renewable electricity, 100%
air autothermal, or a hybrid approach. This versatility optimizes energy use and adapts to varying conditions.
The Gas Heated Cracker (GHC) within HAVAC efficiently reduces energy demands by utilizing waste heat.
Modelled using the Aspen Plus Simulator and validated against experimental data, HAVAC's economic analysis
indicates a levelized cost of hydrogen (LCOH) between $3.80/kg-H₂ and $6.00/kg-H₂. The process's
environmental benefits include reduced greenhouse gas emissions and effective NOx waste management.
Future research will focus on scaling up, reducing ammonia feed cost, optimizing catalysts, and enhancing
waste management. HAVAC offers substantial promise for advancing hydrogen production and supporting a
sustainable, carbon-free hydrogen economy. The technical and economic data generated by this analysis will
assist decision-makers and researchers in advancing the pursuit of a carbon-free hydrogen economy.
Date Issued
2024-10-01
Date Acceptance
2024-08-25
Citation
Energy Advances, 2024, 3 (10), pp.2627-2647
ISSN
2753-1457
Publisher
Royal Society of Chemistry
Start Page
2627
End Page
2647
Journal / Book Title
Energy Advances
Volume
3
Issue
10
Copyright Statement
© 2024 The Author(s). Published by the Royal Society of Chemistry Open Access Article. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
License URL
Identifier
https://pubs.rsc.org/en/content/articlelanding/2024/ya/d4ya00483c
Publication Status
Published
Date Publish Online
2024-09-03