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Unconventional Catalytic Approaches to Ammonia Synthesis

Patrick Barboun, Jason C. Hicks

2020Annual Review of Chemical and Biomolecular Engineering32 citationsDOIOpen Access PDF

Abstract

Ammonia is a critically important industrial chemical and is largely responsible for sustaining the growing global population. To provide ammonia to underdeveloped regions and/or regions far from industrial production hubs, modular systems have been targeted and often involve unconventional production methodologies. These novel approaches for ammonia production can tap renewable resources at smaller scales located at the point of use, while decreasing the CO 2 footprint. Plasma-assisted catalysis and electrochemical ammonia synthesis have promise owing to their atmospheric pressure and low-temperature operation conditions and the ability to construct units at scales desired for modularization. Fundamental and applied studies are underway to assess these processes, although many unknowns remain. In this review, we discuss recent developments and opportunities for unconventional ammonia synthesis with a focus on plasma-stimulated systems.

Topics & Concepts

Ammonia productionAmmoniaBiochemical engineeringProduction (economics)Modular designEnvironmental scienceNatural resource economicsNanotechnologyComputer scienceChemistryEngineeringMaterials scienceEconomicsOrganic chemistryMacroeconomicsOperating systemAmmonia Synthesis and Nitrogen ReductionCatalytic Processes in Materials ScienceMuon and positron interactions and applications