Title of article
Activated carbon catalysts for the production of hydrogen via the sulfur–iodine thermochemical water splitting cycle
Author/Authors
Petkovic، نويسنده , , Lucia M. and Ginosar، نويسنده , , Daniel M. and Rollins، نويسنده , , Harry W. and Burch، نويسنده , , Kyle C. and Deiana، نويسنده , , Cristina and Silva، نويسنده , , Hugo S. and Sardella، نويسنده , , Maria F. and Granados، نويسنده , , Dolly، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2009
Pages
8
From page
4057
To page
4064
Abstract
Seven activated carbon catalysts obtained from a variety of raw material sources and preparation methods were examined for their catalytic activity to decompose hydrogen iodide (HI) to produce hydrogen, a key reaction in the sulfur–iodine (S–I) thermochemical water splitting cycle. Activity was examined under a temperature ramp from 473 to 773 K. Within the group of lignocellulosic steam-activated carbon catalysts, activity increased with surface area. However, both a mineral-based steam-activated carbon and a lignocellulosic chemically activated carbon displayed activities lower than expected based on their higher surface areas. In general, ash content was detrimental to catalytic activity while total acid sites, as determined by Boehmʹs titrations, seemed to favor higher catalytic activity within the group of steam-activated carbons. These results suggest that activated carbon raw materials and preparation methods may have played a significant role in the development of surface characteristics that eventually dictated catalyst activity and stability as well.
Keywords
Sulfur–iodine cycle , Activated carbon catalyst , Hydrogen iodide decomposition , Thermochemical water splitting , Hydrogen production
Journal title
International Journal of Hydrogen Energy
Serial Year
2009
Journal title
International Journal of Hydrogen Energy
Record number
1657748
Link To Document