Transition to Renewable Energy Systems 2013
DOI: 10.1002/9783527673872.ch32
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Near‐Surface Bulk Storage of Hydrogen

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Cited by 7 publications
(2 citation statements)
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“…It also represents around 32% of the hydrogen high heating value (HHV). The lowest energy duties were computed for storage by compression, with values of 3.52 KWh•kgH 2 −1 and 4.2 KWh•kgH 2 −1 at 300 bar and 700 bar, respectively, which agree well with data from the literature [64,65,67,68].…”
Section: Energy Analysis Of the H 2 Storage Systemsupporting
confidence: 81%
“…It also represents around 32% of the hydrogen high heating value (HHV). The lowest energy duties were computed for storage by compression, with values of 3.52 KWh•kgH 2 −1 and 4.2 KWh•kgH 2 −1 at 300 bar and 700 bar, respectively, which agree well with data from the literature [64,65,67,68].…”
Section: Energy Analysis Of the H 2 Storage Systemsupporting
confidence: 81%
“…, via batteries, which is a suitable option to store energy over periods lasting up to a month. The latter can be provided by different forms of hydrogen storage, namely medium-size, near-surface bulk storage 249 and large-scale underground hydrogen storage. 250 Furthermore, the storage infrastructure can reinforce the flexibility of the power and hydrogen transmission system, especially in instances where the supply of renewable energy may be distant from the consumption sites.…”
Section: Hydrogen Transport and Storage Networkmentioning
confidence: 99%