绿色氨:催化、燃烧和利用策略

V. K. Visvanathan, Karthikeyan Palaniswamy, Thanarajan Kumaresan
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引用次数: 0

摘要

工程是关于观察物理条件和能够数学建模系统和解决问题的最佳设计参数使用定义良好的数学方法。印度政府创建了绿色氢和氨市场,促进了生产和使用这些绿色燃料的新技术的发展。制造氨的最流行的工艺之一是1904年的Haber-Bosch工艺,该工艺需要500°F左右的高温和150至300 bar的高压。2013年首次发现了利用太阳能和风能等可再生能源从氮和水合成绿色氨的研究。世界各地的初创企业正在开发一种桌面制氢技术,这种技术可以分解氨,产生适合燃料电池的高级氢气。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green ammonia: catalysis, combustion and utilization strategies
Engineering is about observing physical conditions and being able to mathematically model the systems and solve problems for optimal design parameters using well-defined mathematical approaches. The government of India’s creation of a market for green hydrogen and ammonia promotes the development of newer technologies for producing and using these green fuels. One of the most popular processes for manufacturing ammonia is the Haber-Bosch process of 1904, which needs a high temperature of around 500°F and a high pressure of 150 to 300 bar. A study on the synthesis of green ammonia from nitrogen and water using renewable energy sources like sun and wind was discovered for the first time in 2013. Start-ups worldwide are developing a tabletop hydrogen generator technology that breaks ammonia and creates high-grade hydrogen suitable for fuel cells.
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