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  1. Online calculator with figures and tables showing density and specific weight of ammonia for temperatures ranging -50 to 425 °C (-50 to 800 °F) at atmospheric and higher pressure - Imperial and SI Units.

  2. 17 Ιουν 2020 · Out of this mix, ammonia has emerged as a strong and increasingly compelling candidate as the renewable energy sourced fuel of the future. 2,3. Ammonia is readily liquefied by increasing pressure to ~10 bar at room temperature, or by cooling to −33°C at atmospheric pressure.

  3. 2 Νοε 2020 · ABSTRACT: Ammonia, a molecule that is gaining more interest as a fueling vector, has been considered as a candidate to power transport, produce energy, and support heating applications for decades. However, the particular characteristics of the molecule always made it a chemical with low, if any, benefit once compared to conventional fossil fuels.

  4. Ammonia gas (vapor) diffuses readily in air and the liquid is highly soluble in water with an accompanying release of heat. Ammonia exhibits classical saturation relationships whereby pressure and temperature

  5. The energy density of a fuel stands as one of the most critical factors in determining its viability as an energy vector [25]. Fig. 5 illustrates the energy densities of various fuels. While NH 3 demonstrates superior energy density compared to batteries, H 2, CNG, and methanol.

  6. Ammonia Gas - Density vs. Temperature and Pressure Online calculator with figures and tables showing density and specific weight of ammonia for temperatures ranging -50 to 425 °C (-50 to 800 °F) at atmospheric and higher pressure - Imperial and SI Units.

  7. For full table with Specific Entropy and Superheated Properties - rotate the screen! Ammonia Molecular weight : 17.03 g/mol. Ammonia Melting point : -78oC. Ammonia Latent heat of fusion (1,013 bar, at triple point) : 331.37 kJ/kg.