Ammonia Combustion Applications for Energy Systems
Emerging low-emission energy systems will depend on a range of energy vectors or fuels, for electricity, heating, storage and transport. Each has advantages and shortcomings, qualifying it for certain roles and applications. Liquid ammonia offers a higher energy density than liquid hydrogen. This bo...
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Main Authors | , , , , , |
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Format | eBook |
Language | English |
Published |
Stevenage
The Institution of Engineering and Technology
2025
Institution of Engineering and Technology (The IET) Institution of Engineering & Technology Institution of Engineering and Technology |
Edition | 1 |
Series | Energy Engineering |
Subjects | |
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Abstract | Emerging low-emission energy systems will depend on a range of energy vectors or fuels, for electricity, heating, storage and transport. Each has advantages and shortcomings, qualifying it for certain roles and applications. Liquid ammonia offers a higher energy density than liquid hydrogen.
This book covers trends, developments and advances in research around ammonia combustion systems. It is suitable for engineers, researchers and technicians working with ammonia or hydrogen in combustion systems, as well as for advanced students, especially PhD and MSc students in related subjects.
Ammonia Combustion Applications for Energy Systems begins by introducing the current and potential role of ammonia as a fuel. Further chapters address global distribution of ammonia, measurements in ammonia combustion, combustion systems for ammonia-fuelled gas furnaces and boilers, for gas turbines and other propulsion devices, internal combustion engines, economics, regulations and international scenarios, measuring techniques and insights into the ongoing unsolved challenges in using ammonia for fuelling energy systems. |
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AbstractList | Emerging low-emission energy systems will depend on a range of energy vectors or fuels, for electricity, heating, storage and transport. Each has advantages and shortcomings, qualifying it for certain roles and applications. Liquid ammonia offers a higher energy density than liquid hydrogen. Emerging low-emission energy systems will depend on a range of energy vectors or fuels, for electricity, heating, storage and transport. Each has advantages and shortcomings, qualifying it for certain roles and applications. Liquid ammonia offers a higher energy density than liquid hydrogen. This book covers trends, developments and advances in research around ammonia combustion systems. It is suitable for engineers, researchers and technicians working with ammonia or hydrogen in combustion systems, as well as for advanced students, especially PhD and MSc students in related subjects. Ammonia Combustion Applications for Energy Systems begins by introducing the current and potential role of ammonia as a fuel. Further chapters address global distribution of ammonia, measurements in ammonia combustion, combustion systems for ammonia-fuelled gas furnaces and boilers, for gas turbines and other propulsion devices, internal combustion engines, economics, regulations and international scenarios, measuring techniques and insights into the ongoing unsolved challenges in using ammonia for fuelling energy systems. Emerging low-emission energy systems will depend on a range of energy vectors or fuels, for electricity, heating, storage and transport. Each has advantages and shortcomings, qualifying it for certain roles and applications. Liquid ammonia offers a higher energy density than liquid hydrogen.This book covers trends, developments and advances in research around ammonia combustion systems. It is suitable for engineers, researchers and technicians working with ammonia or hydrogen in combustion systems, as well as for advanced students, especially PhD and MSc students in related subjects.This book begins by introducing the current and potential role of ammonia as a fuel. Further chapters address global distribution of ammonia, measurements in ammonia combustion, combustion systems for ammonia-fuelled gas furnaces and boilers, for gas turbines and other propulsion devices, internal combustion engines, economics, regulations and international scenarios, measuring techniques and insights into the ongoing unsolved challenges in using ammonia for fuelling energy systems. Emerging low-emission energy systems will depend on a range of energy vectors or fuels, for electricity, heating, storage and transport. Each has advantages and shortcomings, qualifying it for certain roles and applications. Liquid ammonia offers a higher energy density than liquid hydrogen.This book covers trends, developments and advances in research around ammonia combustion systems. It is suitable for engineers, researchers and technicians working with ammonia or hydrogen in combustion systems, as well as for advanced students, especially PhD and MSc students in related subjects.Ammonia Combustion Applications for Energy Systems begins by introducing the current and potential role of ammonia as a fuel. Further chapters address global distribution of ammonia, measurements in ammonia combustion, combustion systems for ammonia-fuelled gas furnaces and boilers, for gas turbines and other propulsion devices, internal combustion engines, economics, regulations and international scenarios, measuring techniques and insights into the ongoing unsolved challenges in using ammonia for fuelling energy systems. Ammonia is a vector for a future cleaner energy system. It can be used in combustion devices for electricity generation and as fuel for transport. This work covers technology and measurements for combustion devices for power generation and propulsion. |
Author | Li Yuyang Valera-Medina Agustin Joannon Mara de Shi Hao Bellotti Daria Dong Dongsheng |
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Editor | Joannon, Mara Valera-Medina, Agustin Li, Yuyang Shi, Hao Dong, Dongsheng Bellotti, Daria |
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Keywords | greener energy electricity generation fuel low carbon system propulsion power generation transport power engineering cleaner energy energy engineering transportation combustion devices |
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Publisher | The Institution of Engineering and Technology Institution of Engineering and Technology (The IET) Institution of Engineering & Technology Institution of Engineering and Technology |
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Snippet | Emerging low-emission energy systems will depend on a range of energy vectors or fuels, for electricity, heating, storage and transport. Each has advantages... Ammonia is a vector for a future cleaner energy system. It can be used in combustion devices for electricity generation and as fuel for transport. This work... |
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SubjectTerms | Alternative & Renewable Ammonia Chemistry & Chemical Engineering Electric power production Electrical & Power Engineering Fuel General References Power Generation and Transmission Power Resources TECHNOLOGY & ENGINEERING |
TableOfContents | Chapter 1: Introduction. Ammonia as a fuel -- Chapter 2: Ammonia global distribution -- Chapter 3: Measurement techniques for ammonia combustion systems -- Chapter 4: Combustion systems for ammonia-fueled gas furnaces and boilers -- Chapter 5: Ammonia-fueled internal combustion engines -- Chapter 6: Combustion systems for ammonia-fuelled gas turbines and other propulsion devices -- Chapter 7: Economic considerations for ammonia as fuel -- Chapter 8: H&S implications, regulations and international scenarios -- Chapter 9: Outlook - unsolved challenges in combustion systems Title Page Table of Contents 1. Introduction - Ammonia as a Fuel 2. Ammonia Global Distribution 3. Measurement Techniques for Ammonia Combustion Systems 4. Combustion Systems for Ammonia-Fueled Gas Furnaces and Boilers 5. Ammonia-Fueled Internal Combustion Engines 6. Combustion Systems for Ammonia-Fuelled Gas Turbines and other Propulsion Devices 7. Economic Considerations for Ammonia as Fuel 8. H&S Implications, Regulations and International Scenarios 9. Outlook - Unsolved Challenges in Combustion Systems Index Intro -- Contents -- About the editors -- 1. Introduction. Ammonia as a fuel | M.O. Vigueras-Zuniga, M. De Joannon, H. Shi and A. Valera-Medina -- 2. Ammonia global distribution | C. Anfosso, S. Crosa and D. Bellotti -- 3. Measurement techniques for ammonia combustion systems | Y. Li, X. Shi, Y. Zhang and W. Li -- 4. Combustion systems for ammonia-fueled gas furnaces and boilers | M. de Joannon, G.B. Ariemma, M.V. Manna, P. Sabia, G. Sorrentino and R. Ragucci -- 5. Ammonia-fueled internal combustion engines | H. Shi, E. Boulet, D. Dong, M. Alnajideen, S. Mashruk, Z. Zhang and A. Valera-Medina -- 6. Combustion systems for ammonia-fuelled gas turbines and other propulsion devices | H. Shi, S. Mashruk, M. Alnajideen and A. Valera-Medina -- 7. Economic considerations for ammonia as fuel | C. Monacchini, C. Anfosso and D. Bellotti -- 8. H& -- S implications, regulations and international scenarios | K. Rowenhorst, A. Guati-Rojo and A. Valera-Medina -- 9. Outlook-unsolved challenges in combustion systems | Y. Li, X. Shi, Z. Liu, S. Chen and S. Bin -- Index |
Title | Ammonia Combustion Applications for Energy Systems |
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