File:Volvsgrav.png

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Description
English: Volumetric and gravimetric hydrogen storage densities of di�fferent hydrogen storage

methods. Metal hydrides are represented with squares and complex hydrides with triangles. BaReH9 has the highest know hydrogen to metal ratio (4.5), Mg2FeH6 has the highest known volumetric H2 density, LiBH4 has the highest gravimetric density. Reported values for hydrides are excluding tank weight. DOE targets are including tank weight, thus the hydrogen storage

characteristics of the shown hydrides may appear too optimistic.
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(4 May 2010 (original upload date))
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Transferred from en.wikipedia

(Original text : I (Andr (talk)) created this work entirely by myself.)
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Andr (talk).

Original uploader was Andr at en.wikipedia
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Andr at en.wikipedia, the copyright holder of this work, hereby publishes it under the following licenses:
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The original description page was here. All following user names refer to en.wikipedia.
  • 2010-05-04 22:06 Andr 792×612× (20796 bytes) {{Information |Description = Volumetric and gravimetric hydrogen storage densities of di�fferent hydrogen storage methods. Metal hydrides are represented with squares and complex hydrides with triangles. BaReH9 has the highest know hydrogen to metal

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current03:36, 9 September 2010Thumbnail for version as of 03:36, 9 September 2010792 × 612 (20 KB)Kloisiie (talk | contribs){{Information |Description={{en|Volumetric and gravimetric hydrogen storage densities of di�fferent hydrogen storage methods. Metal hydrides are represented with squares and complex hydrides with triangles. BaReH9 has the highest know hydrogen to metal

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