Temperature Effect on the Rate of Hydrogen Desorption by Carbon Materials

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The paper presents the theoretical foundations of carbon nanotubes, as well as the methods of the saturation of carbon materials containing nanotubes with hydrogen from the gaseous phase. The dependences of hydrogen storage concentration on the pressure (between 0 and 8 atmospheres) at the same temperature for adsorption (–30 degrees Celsius) and different temperatures for desorption have been obtained. Obviously, at 8 atmospheres the concentration of hydrogen storage varies with the change of the temperature. Particular attention was paid to the influence of the temperature on the rate of desorption.

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61-65

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January 2015

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] S.M. Lee, Y.H. Lee., Hydrogen storage in single-walled carbon nanotubes, J. Appl. Phys. Lett. 20 (2000) 2877-2879.

DOI: 10.1063/1.126503

Google Scholar

[2] G.Q. Ning, F. Wei, G.H. Luo, Q.X. Wang, Y.L. Wu, H. Yu, Hydrogen storage in multi-wall carbon nanotubes using samples up to 85 g, J. Appl. Phys. A. 78 (2004) 952- 959.

DOI: 10.1007/s00339-003-2414-z

Google Scholar

[3] Gautam Gundiah, A. Govindaraj, N. Rajalakshmi, K.S. Dhathathreyan, C.N.R. Rao, Hydrogen storage in carbon nanotubes and related materials, J. Mater. Chem. 13 (2003) 209-213.

DOI: 10.1039/b207107j

Google Scholar

[4] X. Xu, M. Fan, B.F. Towler, Hydrogen adsorption and storage, Elsevier, New York, (2011).

Google Scholar

[5] E. Poirier, R. Chahine, P. Benard, D. Cossement, L. Lafi, E. Melancon, T.K. Bose, S. Desilets, Storage of hydrogen on single-walled carbon nanotubes and other carbon structures, Appl. Phys. A. 78 (2004), 961-967.

DOI: 10.1007/s00339-003-2415-y

Google Scholar

[6] A.G. Zherlitsyn, V.P. Shiyan, V.S. Kositsyn, L.V. Gulidova, A.M. Lider, P.S. Postnikov, M.E. Trusova, Production of Hydrogen and Carbon Nanomaterials from Natural Gas for Hydrogen Storage Devices, J. Izvestia vuzov. Fizika. 55 (2012) 230-234.

Google Scholar

[7] L. V. Gulidova, V. N. Kudiyarov, A. M. Lider, The Investigation of Hydrogen Sorption-desorption Process by Carbon Material with Content of Carbon Nanotubes, IFOST. 2 (2012) 58-61.

DOI: 10.1109/ifost.2012.6357684

Google Scholar

[8] V. N. Kudiiarov, L. V. Gulidova, N. S. Pushilina, A. M. Lider, Application of automated complex gas reaction controller for hydrogen storage materials investigation, J. Adv. Mat. Res. 740 (2013) 690-693.

DOI: 10.4028/www.scientific.net/amr.740.690

Google Scholar