Nitrogen Fixation
Forcing inert nitrogen from the air to combine with hydrogen into ammonia — fertilizer manufactured from the atmosphere itself.
गहरा अभिलेखागार फ़िलहाल अंग्रेज़ी में लिखा है — सत्यापित अनुवाद रोडमैप का हिस्सा हैं। आपके ब्राउज़र की अनुवाद सुविधा इस पृष्ठ पर अच्छी तरह काम करती है।

✦ अरे, सच में?
Roughly half the nitrogen atoms in your body's proteins and DNA passed through a Haber-Bosch reactor, torn from the air at around 200 atmospheres and 450 °C. Without the process, the world's farms could feed only about half of today's population.
यह क्या है
Four-fifths of the air is nitrogen, but its two atoms are locked in a triple bond so strong that plants cannot touch it — crops starve amid an ocean of the element they need most. The Haber-Bosch process breaks that bond by brute force: nitrogen and hydrogen are squeezed to hundreds of atmospheres, heated to around 450 °C, and passed over an iron catalyst, combining into ammonia. Ammonia is the feedstock for essentially all synthetic nitrogen fertilizer.
यह क्यों महत्वपूर्ण था
Crop yields are nitrogen-limited, and by 1900 the world was mining its way through Chilean saltpeter and Pacific guano with no replacement in sight; the chemist William Crookes warned in 1898 that the wheat-eating world faced starvation unless science learned to fix nitrogen from air. Haber-Bosch answered, and the consequences are demographic: synthetic fertilizer is a load-bearing wall under a world population that grew from under two billion in 1913 to eight billion today. The same reactors had a darker twin duty — ammonia oxidizes into nitrates for explosives, and Germany fought World War I on Haber's nitrogen after the British blockade cut off Chilean saltpeter.
यह कैसे बनाया गया
Fritz Haber demonstrated the synthesis on a tabletop in 1909; the hard part was Carl Bosch's scale-up at BASF, which demanded steel reactor vessels holding unprecedented pressures at high temperature — early designs failed as hydrogen attacked and embrittled the steel, until Bosch's engineers devised lined, double-walled converters. The first industrial plant at Oppau began producing ammonia in September 1913. It was the founding triumph of chemical engineering: catalysis, high-pressure plant, and continuous gas recycling working as one system.
इसने क्या संभव किया
Synthetic ammonia underwrote the Green Revolution — high-yield wheat and rice varieties are, in effect, machines for converting fertilizer into food — and with it the feeding of billions. It supplies nitric acid, explosives, plastics, and refrigerants, and its high-pressure catalytic method became the template for much of the modern chemical industry. Few single inventions have a stronger claim to sustaining the majority of human lives now alive.
न्यूनतम कार्यक्षम संस्करण
Pass nitrogen from air and hydrogen over a hot iron catalyst inside a thick steel vessel at hundreds of atmospheres; condense out the ammonia and recycle the unreacted gas in a loop.
इससे खुला
स्रोत
- — Vaclav Smil, *Enriching the Earth: Fritz Haber, Carl Bosch, and the Transformation of World Food Production* (2001)
- — Thomas Hager, *The Alchemy of Air* (2008)
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