By Ram Gupta, Angelo Basile, T. Nejat Veziroglu
Compendium of Hydrogen strength, quantity 2: Hydrogen garage, Distribution and Infrastructure focuses at the garage and transmission of hydrogen. As many specialists think the hydrogen economic climate will, at some point soon, exchange the fossil gasoline economic climate because the basic resource of the world’s strength, this e-book information hydrogen garage in natural shape, together with chapters on hydrogen liquefaction, slush creation, in addition to underground and pipeline garage.
Other sections within the booklet discover actual and chemical garage, together with environmentally sustainable equipment of hydrogen construction from water, with ultimate chapters devoted to hydrogen distribution and infrastructure.
- Covers a wide range of equipment for storing hydrogen, detailing hydrogen shipping and the infrastructure required for transition to the hydrogen economy
- Written by means of major teachers within the fields of sustainable power and specialists from the realm of
- Part of a truly finished compendium which appears to be like on the entirety of the hydrogen strength economy
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Extra info for Compendium of Hydrogen Energy: Hydrogen Storage, Distribution and Infrastructure
J. Hydrogen Energy 38 (23), 9755–9765. , 2011. Technical assessment of compressed hydrogen storage tank systems for automotive applications. Int. J. Hydrogen Energy 36, 14534–14551. H. Motor vehicle storage of hydrogen using metal hydrides, EPA report TEC-75/001. , 2008. Design and its limitations in the construction of bi- and poly-nuclear coordination complexes and coordination polymers (aka MOFs): a personal view. Dalton Trans. 38, 5113–5131. , 1999. Adsorption by Powders and Porous Solids. Academic Press, London.
32 Compendium of Hydrogen Energy In general, throttling of any fluid leads to an appreciable temperature change, either positive or negative. This behavior is described by the thermodynamic property called the Joule–Thomson coefficient, μ (K PaÀ1), after the homonymous scientists and experiment. 1) h where T is the temperature (K), p is pressure (Pa), and h is the specific enthalpy (J kgÀ1). The Joule–Thomson coefficient shows whether an infinitesimal throttling causes an infinitesimal increase, decrease, or even invariability of the fluid temperature from a given temperature and pressure condition.
Fuel cycle efficiencies of different automotive on-board hydrogen storage options. Int. J. Hydrogen Energy 32, 3592–3602. , 2007. Using first principles calculations to identify new destabilized metal hydride reactions for reversible hydrogen storage. Phys. Chem. Chem. Phys. 9, 1438–1452. , 1985. Multilayer insulations, Cryogenic Systems, second ed. Oxford University Press, New York, p. 397. , 1997. Ti-doped alkali metal aluminium hydrides as potential novel reversible hydrogen storage materials.
Compendium of Hydrogen Energy: Hydrogen Storage, Distribution and Infrastructure by Ram Gupta, Angelo Basile, T. Nejat Veziroglu