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      "text": "\"Green\" ammonia is produced using “renewable” electricity to power an electrolyser to extract hydrogen from water and an air separation unit to extract nitrogen from air, which are then combined through a chemical reaction powered by renewable electricity, to produce ammonia",
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      "text": "In addition, “blue” and “green” ammonia have potential for use as lower-carbon alternative fuels: for engines/turbines to generate electricity, in alkaline fuel cells, as an up-to-70% blend ICE vehicles and for the maritime industry",
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      "text": "Derived from natural gas, nearly all of the world's production made utilizing the Haber-Bosch process",
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      "text": "Ammonia can also be a lower-cost option for transporting hydrogen, which can be used for fuel cells or other applications. Ammonia is easier to transport and store than hydrogen, as it doesn't require cryogenic or high-pressure storage, and can be relatively easily cracked to convert it to hydrogen",
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      "text": "Gray Ammonia for which by-product CO2 has been captured and stored, reducing climate impact",
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      "text": "Traditional fossil-fuel ammonia production is estimated to contribute about 1.0% of global CO2 emissions, which has driven interest in its de-carbonization",
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      "text": "Sources: Science Magazine, IHS Markit, Argus, Research & Markets Global Ammonia Report",
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      "text": "Ammonia, the World's Second-most Widely Used Chemical, Offers Significant “Greening\" Opportunities",
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