Bluesky Facebook Reddit Email

Paving the way for zero-carbon shipping: Novel ammonia engine combustion mode cuts greenhouse gases by over 70%

05.19.26 | Shanghai Jiao Tong University Journal Center

Apple AirPods Pro (2nd Generation, USB-C)

Apple AirPods Pro (2nd Generation, USB-C) provide clear calls and strong noise reduction for interviews, conferences, and noisy field environments.


A research team from Tianjin University and Lund University introduces the Thermal Atmosphere Compression Ignition (TACI) mode, achieving stable and clean ammonia diffusion combustion to meet maritime decarbonization targets.

As global economies race to fulfill net-zero carbon pledges, green ammonia has emerged as one of the most promising carbon-free liquid fuels to decarbonize the transportation sector, particularly the heavy-duty marine shipping industry. However, ammonia’s unfavorable combustion properties—such as its low flame velocity and high resistance to ignition—have long hindered its practical application in internal combustion engines (ICEs). Traditional combustion approaches often suffer from severe fuel slip, poor efficiency, or elevated emissions of nitrous oxide (N₂O), a greenhouse gas nearly 300 times more potent than carbon dioxide.

In a milestone study published in ENGINEERING Energy , a collaborative team of scientists from the State Key Laboratory of Engines at Tianjin University (China) and the Department of Energy Sciences at Lund University (Sweden) has unveiled a breakthrough solution: the Ammonia Thermal Atmosphere Compression Ignition (TACI) combustion mode. This innovative approach successfully bypasses ammonia’s inherent kinetic limitations, achieving highly efficient, stable, and clean ammonia diffusion combustion under mild operating conditions.

Key Research Highlights and Innovations:

Unlike conventional premixed systems, the TACI mode leverages a unique multi-stage combustion strategy. First, a highly reactive and volatile fuel, n-heptane, is introduced into the intake pipe and undergoes Homogeneous Charge Compression Ignition (HCCI) within the engine cylinder. This primary combustion creates a highly active "thermal atmosphere" characterized by elevated temperatures, increased pressures, and an abundance of reactive chemical radicals. Liquid ammonia is then precisely injected at high pressure into this pre-activated environment, triggering instantaneous auto-ignition and establishing a stable diffusion flame.

"By dominating the process through fuel-air mixing rather than relying solely on flame propagation, diffusion combustion effectively overcomes ammonia's sluggish burning rate," explain researchers. "Furthermore, the local rich-burn conditions inherent to this diffusion mode naturally facilitate the selective non-catalytic reduction (SNCR) of nitrogen oxides (NOₓ), which intrinsically minimizes harmful pollutant formation."

Crucially, the TACI system maintains exceptionally high thermal efficiency while ensuring negligible unburned ammonia slip and ultra-low N₂O emissions under stable operating states. This performance directly aligns with the rigorous 2040 greenhouse gas reduction targets established by the International Maritime Organization (IMO), marking a critical leap forward in bringing zero-carbon internal combustion engines from theoretical research into practical, commercial reality.

Journal : ENGINEERING Energy

Read the full article for free: https://rdcu.be/fjgRX

Cite this article : Yang, R., Zhang, S., Sun, J., Yue, Z., Wang, H., Xu, L., Bai, X. S., & Yao, M. Ammonia thermal atmosphere compression ignition engine: Stable combustion mechanism and intake control strategy. ENGINEERING Energy , 2026, 20(2): 10651. https://doi.org/10.1007/s11708-026-1065-1

ENGINEERING Energy

10.1007/s11708-026-1065-1

News article

Ammonia thermal atmosphere compression ignition engine: Stable combustion mechanism and intake control strategy

15-Apr-2026

Keywords

Article Information

Contact Information

Bowen Li
Shanghai Jiao Tong University Journal Center
qkzx@sjtu.edu.cn

Source

How to Cite This Article

APA:
Shanghai Jiao Tong University Journal Center. (2026, May 19). Paving the way for zero-carbon shipping: Novel ammonia engine combustion mode cuts greenhouse gases by over 70%. Brightsurf News. https://www.brightsurf.com/news/L59NYW78/paving-the-way-for-zero-carbon-shipping-novel-ammonia-engine-combustion-mode-cuts-greenhouse-gases-by-over-70.html
MLA:
"Paving the way for zero-carbon shipping: Novel ammonia engine combustion mode cuts greenhouse gases by over 70%." Brightsurf News, May. 19 2026, https://www.brightsurf.com/news/L59NYW78/paving-the-way-for-zero-carbon-shipping-novel-ammonia-engine-combustion-mode-cuts-greenhouse-gases-by-over-70.html.