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https://www1.eere.energy.gov/hydrogenandfuelcells/pdfs/liquefaction_comp_pres_praxair.pdf
Hydrogen Liquefaction ¾There are 10 hydrogen liquefaction plants in North America zTrain size ranges from 6 to 35 TPD (5,400 to 32,000 kg/day) ¾In the 1960’s, liquid hydrogen plants were built to support the Apollo program. Today, liquid hydrogen is used to reduce the cost of hydrogen distribution.File Size: 842KB
https://www.energy.gov/eere/fuelcells/doe-technical-targets-hydrogen-delivery
These tables summarize the U.S. Department of Energy (DOE) cost and performance targets for major hydrogen delivery process technologies: pressurized containment (for stationary and transport operations), pressurization (compression and pumping), and liquefaction.
https://www.hydrogen.energy.gov/h2a_delivery.html
DOE H2A Delivery Analysis. Hydrogen delivery is an essential component of any future hydrogen energy infrastructure. Hydrogen must be transported from the point of production to the point of use and handled within refueling stations or stationary power facilities.
https://idealhy.eu/uploads/documents/IDEALHY_Cryogenics_2012_Precooling.pdf
Hydrogen Delivery Liquefaction & Compression- , in . Praxair, Strategic Initiatives for Hydrogen Delivery Workshop. 2003. 6. Quack, H. Conceptual design of a high efficiency large capacity hydrogen liquefier. in . ADVANCES IN CRYOGENIC ENGINEERING: Proceedings of the Cryogenic Engineering Conference - …File Size: 591KB
https://www.hydrogen.energy.gov/pdfs/9013_energy_requirements_for_hydrogen_gas_compression.pdf
rates and pressures for 1,000 kg/day hydrogen refueling stations, these compressors can achieve an isentropic efficiency of about 56% and a motor efficiency of 92% [5]. Using these values, the H2A Delivery Scenario Model (HDSAM) projects a refueling station compression energy efficiency of 52% to fill 350 and 49% for 700 bar vehicles. ThisFile Size: 754KB
https://hydrogeneurope.eu/liquefaction-systems
If hydrogen is to be liquefied, its temperature must be below this point. Therefore the liquefaction of hydrogen requires mostly cooling and an additional compression, and the method is also called as cryogenic hydrogen storage. The liquefication of hydrogen is a rather energy demanding process.
https://en.wikipedia.org/wiki/Hydrogen_compressor
Compressor vs pump. Hydrogen compressors are closely related to hydrogen pumps and gas compressors: both increase the pressure on a fluid and both can transport the fluid through a pipe.As gases are compressible, the compressor also reduces the volume of hydrogen gas, whereas the main result of a pump raising the pressure of a liquid is to allow the liquid hydrogen to be transported …
https://www.sciencedirect.com/science/article/pii/S0360319919340650
Diesel fuel was used for transporting H 2 via trucks, and electricity was used for other processes, such as liquefaction, pumping, compression, and precooling. Table 1 suggests that compression is the biggest energy consumer in the G.H 2 delivery pathway, while liquefaction is the dominant energy consumer in the L.H 2 delivery pathway.Author: Xinyu Liu, Krishna Reddi, Amgad Elgowainy, Henning Lohse-Busch, Michael Wang, Neha Rustagi
http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.710.3061&rep=rep1&type=pdf
2.1 Central Plant Hydrogen Compression, Liquefaction and Storage Storage is provided at the central station (and also at refueling stations) to help meet time variations in hydrogen demand, and to assure a reliable hydrogen supply. For compressed gas delivery by truck or pipeline, compression and gas storage are used at the central plant. For
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