The reaction listed above is reversible, so these catalysts push the reaction towards the production of ammonia. Iron is used as a catalyst to manufacture ammonia using the Haber process. Recently, scientists have reported ruthenium -- a transition metal -- as an efficient "catalyst" for ammonia synthesis, as it operates under milder conditions than traditional iron-based catalysts. The Haber process synthesizes approximately 150 million tons of ammonia each year and has allowed the earth to sustain a population nearly five times larger than before the procedure’s invention. The speed of a chemical reaction may increase or decrease by the addition of a catalyst. a catalyst (a porous iron catalyst prepared by reducing magnetite, Fe 3 O 4). Ammonia synthesis is the process by which ammonia is formed from nitrogen and hydrogen over a catalyst (usually iron). Until 1990, when Kellog Advanced Ammonia Plant introduced carbon-supported ruthenium catalyst, iron catalyst was the only catalyst used in industrial ammonia synthesis [1, 2]. However, various This process produces an ammonia, NH 3 (g), yield of approximately 10-20%. oxide and zinc aluminum spinel. hydrogen by feeding the reactants over iron catalysts at a high pressure and temperature, requiring bulky, well-insulated reactors to house the process. Osmium is a much better catalyst for the reaction but is very expensive. (Source: Haldor Topsoe, 2016). • Ammonia synthesis catalyst: KM 111 KM 111, a magnetite-based catalyst, developed for lower beds of the ammonia converter possesses an This is in accordance to Le Chatlier’s principle, which states that any change in concentration , temperature, volume, or partial pressure to a system in equilibrium will cause the equilibrium to shift in order to counteract the imposed change. Nanoscale iron catalysts, designed for industrial chemical applications, have been validated in commercial ammonia-production reactors in China. This, combined with the use of the hot iron catalyst, means that a good yield of ammonia is produced constantly. In the production of ammonia, Iron is used as a catalyst. The Haber synthesis was developed into an industrial process by Carl Bosch. Ammonia decomposition Iron catalyst Cobalt catalyst 1 Introduction Catalysts for ammonia synthesis have been the study sub-ject for over 100 years now. The compressed gas is then pumped into the converter, where it flows over beds of iron catalysts kept around at least 450°C (840°F). The iron-free formulation prevents formation of unwanted iron carbides that reduce the catalyst strength of conventional iron-based HTS catalysts. 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