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  2. Haber process - Wikipedia

    en.wikipedia.org/wiki/Haber_process

    The Haber process, [1] also called the HaberBosch process, is the main industrial procedure for the production of ammonia. [ 2 ] [ 3 ] It converts atmospheric nitrogen (N 2 ) to ammonia (NH 3 ) by a reaction with hydrogen (H 2 ) using finely divided iron metal as a catalyst:

  3. Ammonia production - Wikipedia

    en.wikipedia.org/wiki/Ammonia_production

    Fritz Haber, 1918. The Haber process, [7] also called the HaberBosch process, is the main industrial procedure for the production of ammonia. [8] [9] It converts atmospheric nitrogen (N 2) to ammonia (NH 3) by a reaction with hydrogen (H 2) using finely divided iron metal as a catalyst:

  4. History of the Haber process - Wikipedia

    en.wikipedia.org/wiki/History_of_the_Haber_process

    The history of the Haber process begins with the invention of the Haber process at the dawn of the twentieth century. The process allows the economical fixation of atmospheric dinitrogen in the form of ammonia, which in turn allows for the industrial synthesis of various explosives and nitrogen fertilizers, and is probably the most important industrial process developed during the twentieth ...

  5. Fritz Haber - Wikipedia

    en.wikipedia.org/wiki/Fritz_Haber

    The HaberBosch process was a milestone in industrial chemistry. The production of nitrogen-based products such as fertilizer and chemical feedstocks, which was previously dependent on acquisition of ammonia from limited natural deposits, now became possible using an easily available and abundant base: atmospheric nitrogen. [ 19 ]

  6. Ammonia - Wikipedia

    en.wikipedia.org/wiki/Ammonia

    The Haber process, [146] also called the HaberBosch process, is the main industrial procedure for the production of ammonia. [147] [148] It converts atmospheric nitrogen (N 2) to ammonia (NH 3) by a reaction with hydrogen (H 2) using finely divided iron metal as a catalyst:

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  8. Carl Bosch - Wikipedia

    en.wikipedia.org/wiki/Carl_Bosch

    The HaberBosch Process today consumes more than one percent of humanity's energy production and is responsible for feeding roughly one-third of its population. [10] On average, one-half of the nitrogen in a human body comes from synthetically fixed sources, the product of a HaberBosch plant. [11]

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