Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6656292 | Fuel Processing Technology | 2018 | 15 Pages |
Abstract
Reactivity in batch fluidized bed reactor of the Mn-ZrSG oxygen carrier with methane increases with temperature although suffered from significant deactivation. This was different to the results found during multiple redox cycles by TGA. There was not a clear reason for this decrease in the reactivity that likely could be due to the uncomplete oxidation in the batch fluidized bed reactor, although further investigations are needed. On the other hand, it presented high and constant reactivity with CO and H2 in all the range of temperatures tested, being suitable for iG-CLC processes of coal or biomass and syngas combustion. Agglomeration problems were not found and the attrition losses were small. Calculated lifetime was around 11,000â¯h, much higher than any other Mn-based material developed or tested for CLC.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Chemical Engineering (General)
Authors
T.R. Costa, P. Gayán, A. Abad, F. GarcÃa-Labiano, L.F. de Diego, D.M.A. Melo, J. Adánez,