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2016 | OriginalPaper | Buchkapitel

17. Liquid Hydrogen Carriers

verfasst von : Hai-Wen Li

Erschienen in: Hydrogen Energy Engineering

Verlag: Springer Japan

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Abstract

This chapter describes key technologies for typical liquid hydrogen carriers, including the liquefaction process and storage vessel of liquid hydrogen, de-/re-hydrogenation properties of cycloalkane and heterocycle-based organic hydrides, as well as production process and thermal decomposition of ammonia.

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Literatur
3.
Zurück zum Zitat Mori D, Hirose K (2009) Recent challenges of hydrogen storage technologies for fuel cell vehicles. Int J Hydrogen Energy 34:4569–4574CrossRef Mori D, Hirose K (2009) Recent challenges of hydrogen storage technologies for fuel cell vehicles. Int J Hydrogen Energy 34:4569–4574CrossRef
4.
Zurück zum Zitat Hanada T, Takahashi K (2009) Liquid-hydrogen storage. In: Ohta T, Veziroglu TN (eds) Energy carriers and conversion systems. UNESCO-EOLSS Hanada T, Takahashi K (2009) Liquid-hydrogen storage. In: Ohta T, Veziroglu TN (eds) Energy carriers and conversion systems. UNESCO-EOLSS
5.
Zurück zum Zitat Züttel A (2003) Materials for hydrogen storage. Mater Today 6:24–33CrossRef Züttel A (2003) Materials for hydrogen storage. Mater Today 6:24–33CrossRef
7.
Zurück zum Zitat Sultan O, Shaw M (1975) Study of automotive storage of hydrogen using recyclable chemical carriers. ERDA, Ann Arbor, MI, TEC-75/003 Sultan O, Shaw M (1975) Study of automotive storage of hydrogen using recyclable chemical carriers. ERDA, Ann Arbor, MI, TEC-75/003
9.
Zurück zum Zitat Karanth NG, Hughes R (1972) The kinetics of the catalytic hydrogenation of toluene. J appl Chem Bwtechnol 23:817–827CrossRef Karanth NG, Hughes R (1972) The kinetics of the catalytic hydrogenation of toluene. J appl Chem Bwtechnol 23:817–827CrossRef
10.
Zurück zum Zitat Roy S, Datta S (2013) Hydrogenation of toluene on zirconium-modified hexagonal molecular sieve supported platinum and palladium catalysts. Ind Eng Chem Res 52:17360–17368CrossRef Roy S, Datta S (2013) Hydrogenation of toluene on zirconium-modified hexagonal molecular sieve supported platinum and palladium catalysts. Ind Eng Chem Res 52:17360–17368CrossRef
11.
Zurück zum Zitat Alhumaidan F, Cresswell D, Garforth A (2011) Hydrogen storage in liquid organic hydride: producing hydrogen catalytically from methylcyclohexane. Energy Fuels 25:4217–4234CrossRef Alhumaidan F, Cresswell D, Garforth A (2011) Hydrogen storage in liquid organic hydride: producing hydrogen catalytically from methylcyclohexane. Energy Fuels 25:4217–4234CrossRef
12.
Zurück zum Zitat Pez GP, Scott AR, Cooper AC, Cheng H (2006) Hydrogen storage by reversible hydrogenation of pi-conjugated substrates. US Patent 7,101,530, 5 Sep 2006 Pez GP, Scott AR, Cooper AC, Cheng H (2006) Hydrogen storage by reversible hydrogenation of pi-conjugated substrates. US Patent 7,101,530, 5 Sep 2006
13.
Zurück zum Zitat Clot E, Eisenstein O, Crabtree RH (2007) Computational structure–activity relationships in H2 storage: how placement of N atoms affects release temperatures in organic liquid storage materials. Chem Commun 2231–2233 Clot E, Eisenstein O, Crabtree RH (2007) Computational structure–activity relationships in H2 storage: how placement of N atoms affects release temperatures in organic liquid storage materials. Chem Commun 2231–2233
14.
Zurück zum Zitat Teichmann D, Arlt W, Wasserscheid P, Freymann R (2011) A future energy supply based on liquid organic hydrogen carriers (LOHC). Energy Environ Sci 4:2767–2773CrossRef Teichmann D, Arlt W, Wasserscheid P, Freymann R (2011) A future energy supply based on liquid organic hydrogen carriers (LOHC). Energy Environ Sci 4:2767–2773CrossRef
15.
Zurück zum Zitat Zhu Q, Xu Q (2015) Liquid organic and inorganic chemical hydrides for high-capacity hydrogen storage. Energy Environ Sci 8:478–512CrossRef Zhu Q, Xu Q (2015) Liquid organic and inorganic chemical hydrides for high-capacity hydrogen storage. Energy Environ Sci 8:478–512CrossRef
16.
Zurück zum Zitat Luo W, Campbell PG, Zakharov LN, Liu S-Y (2011) A single-component liquid-phase hydrogen storage material. J Am Chem Soc 133:19326–19329CrossRef Luo W, Campbell PG, Zakharov LN, Liu S-Y (2011) A single-component liquid-phase hydrogen storage material. J Am Chem Soc 133:19326–19329CrossRef
20.
Zurück zum Zitat Yin SF, Xu BQ, Zhou XP, Au CT (2004) A mini-review on ammonia decomposition catalysts for on-site generation of hydrogen for fuel cell applications. Appl Catal A Gen 277:1–9CrossRef Yin SF, Xu BQ, Zhou XP, Au CT (2004) A mini-review on ammonia decomposition catalysts for on-site generation of hydrogen for fuel cell applications. Appl Catal A Gen 277:1–9CrossRef
21.
Zurück zum Zitat David WIF, Makepeace JW, Callear SK, Hunter HMA, Taylor JD, Wood TJ, Jones MO (2014) Hydrogen production from ammonia using sodium amide. J Am Chem Soc 136:13082–13085CrossRef David WIF, Makepeace JW, Callear SK, Hunter HMA, Taylor JD, Wood TJ, Jones MO (2014) Hydrogen production from ammonia using sodium amide. J Am Chem Soc 136:13082–13085CrossRef
Metadaten
Titel
Liquid Hydrogen Carriers
verfasst von
Hai-Wen Li
Copyright-Jahr
2016
Verlag
Springer Japan
DOI
https://doi.org/10.1007/978-4-431-56042-5_17