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Low- and intermediate-temperature ammonia/hydrogen oxidation in a flow reactor: Experiments and a wide-range kinetic modeling

Low- intermediate-temperature ammonia/hydrogen oxidation flow is a M.Tech project topic for Chemical Engineering. Explore the IEEE-style abstract,…

Low- intermediate-temperature ammonia/hydrogen oxidation flow is a M.Tech project topic for Chemical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.

Low- intermediate-temperature ammonia/hydrogen oxidation flow Project Details

Abstract

This research-oriented project focuses on the kinetic modeling and simulation of ammonia/hydrogen (NH3/H2) fuel blend oxidation under low- and intermediate-temperature conditions. Given the potential of ammonia as a carbon-free energy carrier, understanding its combustion and oxidation kinetics when blended with hydrogen is critical for modern power generation and propulsion systems. The project framework provides guidance on implementing a modular, hierarchical kinetic model to simulate chemical pathways within a flow reactor environment at near-atmospheric pressures (approximately 126.7 kPa). Through numerical simulation support, the project evaluates the consumption profiles of the fuel blends, oxidizers, and intermediate species. Special emphasis is placed on analyzing the reactivity enhancement provided by hydrogen addition, which exhibits

a near-linear relationship with its mole fraction under flow reactor conditions, contrasting with laminar flame speed behaviors. Furthermore, the critical role of hydroperoxyl (HO2) radicals in regulating fuel conversion pathways is systematically investigated. This modeling structure assists researchers in validating kinetic mechanisms against experimental datasets, offering a robust platform for evaluating clean energy transition technologies.

Reference Paper Low- and intermediate-temperature ammonia/hydrogen oxidation in a flow reactor: Experiments and a wide-range kinetic modeling
Domain Chemical Engineering
Sub-Domain Process Systems / Reaction Engineering / Kinetic Modeling
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