The fabrication of carbon solids which have a narrow distribution of pore size and fairly high strength has been made by carbonizing briquettes of grafted carbon black. These briquettes have a large pore volume of about 0.7 ml/g. The carbon black particles are bonded to each other by a carbonized po
Catalytic preparation of narrow pore size distribution mesoporous carbon
β Scribed by Eli Ruckenstein; Yun Hang Hu
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 471 KB
- Volume
- 36
- Category
- Article
- ISSN
- 0008-6223
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β¦ Synopsis
The carbon deposited during the catalytic decomposition of CH, over Ni, Co or Fe particles, at temperatures between 500 and 78O"C, was investigated by N, adsorption, TEM and XPS. A much larger amount of carbon was formed on Ni than on Co or Fe. The pore size distribution curves indicate that the carbon deposited on the three metals has most of the pores in the 3-4 nm range. The proportion of pores in that range decreases on Ni, but increases on Co or Fe with reaction time. During the CH, decomposition over Ni at 5OO"C, two kinds of carbon were identified: 1) nanotube carbon (with the smallest inner diameter of about 3 nm) and 2) mesoporous carbon. At high temperatures, almost only the mesoporous carbon with a narrow pore size distribution around 3.5 nm could be observed. It is likely that the nanotubes are the precursors of the mesoporous carbon, because the inner diameter of the smaller ones is almost equal to the size of the pores, and the nanotubes are no longer present at high temperatures.
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