Consider the following statements regarding Green Ammonia: It is produ...
Recently, V.O. Chidambaranar Port Authority Tamil Nadu successfully received and handled Green Ammonia Containers from Damietta Port, Egypt.
- It is produced by using hydrogen from water electrolysis and nitrogen separated from the air.
- These are then fed into the Haber process (also known as Haber-Bosch) which is powered by sustainable electricity.
- In the Haber process, hydrogen and nitrogen are reacted together at high temperatures and pressures to produce ammonia, NH3.
- Green ammonia production is where the process of making ammonia is 100% renewable and carbon-free.
- It can be used in
- Fuel for engines such as locomotives and shipping, replacing diesel and marine fuel oil
- Fuel source for electricity power generation
- Building block to make fertilisers for use in agriculture
- Feedstock for industrial and manufacturing applications ranging from water purification through to pharmaceuticals
Key facts about Ammonia
- It is a colorless highly irritating gas with a sharp suffocating odor.
- It dissolves easily in water to form ammonium hydroxide solution which can cause irritation and burns.
- Ammonia gas is easily compressed and forms a clear, colorless liquid under pressure.
- It is usually shipped as a compressed liquid in steel cylinders.
- Ammonia is not highly flammable, but containers of ammonia may explode when exposed to high heat.
Hence both statements are correct.
Consider the following statements regarding Green Ammonia: It is produ...
Green Ammonia
Statement 1: Green Ammonia is produced by using hydrogen from water electrolysis and nitrogen separated from the air.
Green Ammonia is produced using a process called Haber-Bosch synthesis, which combines hydrogen and nitrogen to produce ammonia (NH3). The hydrogen used in this process can be obtained through water electrolysis, where water is split into hydrogen and oxygen using an electric current. The nitrogen required for the synthesis can be separated from the air through a process called air separation.
Statement 2: Green Ammonia can be used as fuel for engines such as locomotives and shipping.
Green Ammonia has gained attention as a potential carbon-neutral fuel. It can be used as a fuel for various applications, including engines used in locomotives and shipping. Green Ammonia can be burned in an engine to produce energy, and the only byproducts of its combustion are water and nitrogen gas, making it a cleaner alternative to traditional fossil fuels.
Explanation:
Both statements are correct.
Green Ammonia is produced using a combination of hydrogen and nitrogen. The hydrogen can be obtained through water electrolysis, where an electric current is passed through water to split it into hydrogen and oxygen. The nitrogen required for the process can be separated from the air through air separation techniques.
Green Ammonia has the potential to be used as a fuel for various applications, including engines used in locomotives and shipping. It can be burned in an engine to produce energy, and the byproducts of its combustion are water and nitrogen gas. This makes it a cleaner alternative to traditional fossil fuels, as it does not release carbon dioxide or other harmful emissions during combustion.
The use of Green Ammonia as a fuel has gained attention due to its potential to reduce greenhouse gas emissions and dependence on fossil fuels. It can be produced using renewable energy sources, such as solar or wind power, for water electrolysis. This makes Green Ammonia a promising option for decarbonizing various sectors, including transportation and power generation.
In conclusion, Green Ammonia is produced using hydrogen from water electrolysis and nitrogen separated from the air. It can be used as a fuel for engines such as locomotives and shipping, making it a cleaner alternative to traditional fossil fuels. Both statements are correct.
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