out to increase the use of methane as well by the mines and external users. The actual and designed activities of JSW SA in the range of utilization of methane from the coal beds are presented. ## Transport, storage 02/01400 Hydrogen storage in carbon nanotubes Cheng, H-M. et al. Carbon, 2001, 39,
Hydrogen storage in carbon nanotubes
✍ Scribed by M. Becher; M. Haluska; M. Hirscher; A. Quintel; V. Skakalova; U. Dettlaff-Weglikovska; X. Chen; M. Hulman; Y. Choi; S. Roth; V. Meregalli; M. Parrinello; R. Ströbel; L. Jörissen; M.M. Kappes; J. Fink; A. Züttel; I. Stepanek; P. Bernier
- Publisher
- Elsevier Science
- Year
- 2003
- Tongue
- English
- Weight
- 329 KB
- Volume
- 4
- Category
- Article
- ISSN
- 1631-0705
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Hydrogen spillover effect on hydrogen storage in catalyst loaded carbon nanotubes (CNTs) with different surface characteristics was investigated in the present study. Three diameter ranges of pristine CNTs were employed. Physical structure of CNTs surface was modified by KOH activation at different
Single-walled carbon nanotube samples were synthesized with solar energy. The products are characterized by electron microscopy, Raman spectroscopy and nitrogen isotherms. The maximum value of the hydrogen uptake is 1 wt.% at 253 K and 6 MPa. The results are discussed by taking account of the struct