Journal ArticleDOI
Hydrogen absorption kinetics of V4Cr4Ti alloy prepared by aluminothermy
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TLDR
In this paper, the hydrogen absorption kinetics of V4Cr4Ti alloy, synthesized by aluminothermy process has been investigated in the temperature range of 373-773 K.About:
This article is published in International Journal of Hydrogen Energy.The article was published on 2012-02-01. It has received 36 citations till now. The article focuses on the topics: Nucleation & Arrhenius equation.read more
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A review on kinetic models and corresponding analysis methods for hydrogen storage materials
Yuepeng Pang,Qian Li +1 more
TL;DR: A review of the assumptions and derivation steps of the kinetic models, summarization of corresponding analysis methods, and introduction of some recently proposed kinetic models and analysis methods for hydrogen storage materials can be found in this paper.
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Development of vanadium based hydrogen storage material: A review
TL;DR: In this paper, a systematic review of vanadium as a base material for hydrogen storage and permeation membrane is presented, where the vanadium has shown high hydrogen solubility and diffusivity at nominal temperature and pressure conditions.
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High performance FeTi – 3.1 mass % V alloy for on board hydrogen storage solution
TL;DR: In this paper, the crystal structure of FeTi intermetallic and FeTi-3.1 mass % V alloy was studied in a thermobalance attached to a Sieverts apparatus at a temperature of 327 K under 0.2 MPa hydrogen pressure.
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Thermodynamics and kinetics of nano-engineered Mg-MgH2 system for reversible hydrogen storage application
TL;DR: In this paper, the authors studied the thermodynamics and kinetics of hydrogenation-dehydrogenation of nanometric iron (nFe) doped Mg-MgH 2 system.
Journal ArticleDOI
Variation of activation energy of hydrogen absorption of vanadium as a function of aluminum
TL;DR: In this article, the authors studied the hydrogen absorption kinetics of vanadium-aluminum alloys in the temperature range of 624-924 K. The data of instantaneous reacted fractions at four different temperatures were obtained using the pressure drop method and these data were linearly fitted to a suitable reaction mechanism function.
References
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Hydrogen-storage materials for mobile applications
TL;DR: Recent developments in the search for innovative materials with high hydrogen-storage capacity are presented.
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Metal hydride materials for solid hydrogen storage: a review
TL;DR: A review of metal hydrides on properties including hydrogen-storage capacity, kinetics, cyclic behavior, toxicity, pressure and thermal response is presented in this article, where a group of Mg-based hydride stand as promising candidate for competitive hydrogen storage with reversible hydrogen capacity up to 7.6 W% for on-board applications.
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Towards the hydrogen economy
TL;DR: In this article, a description of the potential paths that may make it possible to change from the current energy sources to a cleaner energy production system is provided, the main focus being placed on how the so-called hydrogen economy might eventually be implemented, taking into account the issues of hydrogen production, distribution, storage and use.
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A review of hydrogen storage systems based on boron and its compounds
TL;DR: A survey of utilization of boron for hydrogen storage can be found in this paper, where a brief summary of hydrogen storage technology in general and focus on possible uses of BORON and its compounds is presented.
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Absorption and desorption kinetics of hydrogen storage alloys
TL;DR: In this paper, reaction models for the formation and decomposition of metal hydrides with one rate determining partial reaction step are presented, based on reasonable physical assumptions for each of the partial steps.