http://www.cnr.it/ontology/cnr/individuo/prodotto/ID190053
Beneficiation of coal fly ashes by oxygen chemisorption (Articolo in rivista)
- Type
- Label
- Beneficiation of coal fly ashes by oxygen chemisorption (Articolo in rivista) (literal)
- Anno
- 2012-01-01T00:00:00+01:00 (literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#doi
- 10.1016/j.expthermflusci.2012.03.022 (literal)
- Alternative label
Senneca, O., Salatino, P., Sorrenti, R. (2012)
Beneficiation of coal fly ashes by oxygen chemisorption
in Experimental thermal and fluid science; Elsevier Ltd, Oxford (Regno Unito)
(literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#autori
- Senneca, O., Salatino, P., Sorrenti, R. (literal)
- Pagina inizio
- Pagina fine
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#numeroVolume
- Experimental Thermal and Fluid Science 43 (2012) 76-81 (literal)
- Rivista
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#numeroFascicolo
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#affiliazioni
- Istituto di Ricerche sulla Combustione-C.N.R., P.le Tecchio 80, 80125 Napoli, Italy
Dipartimento di Ingegneria Chimica, Università degli Studi di Napoli Federico II, P.le Tecchio 80, 80125 Napoli, Italy
Magaldi Industrie S.r.l., Via Irno 219, 84135 Salerno, Italy (literal)
- Titolo
- Beneficiation of coal fly ashes by oxygen chemisorption (literal)
- Abstract
- This paper addresses the issue of unburnt carbon in fly ashes from coal-fired power stations. It has been
shown that carbon-in-ash has much lower combustion reactivity than the original coal, because of the
extensive thermal annealing experienced in the boiler. Thermal annealing reduces the rate of the first
reaction step of which carbon combustion is composed, namely oxygen chemisorption. In the present
work experiments have been carried out in order to verify if a preconditioning stage consisting of mild
pre-oxidation with air is able to promote oxygen chemisorption thus increasing the combustion reactivity
of ashes. Fly ashes with high LOI have been exposed to air at temperature <400 ?C for times up to
300 min. Results show that a satisfactory extent of oxygen chemisorption can be attained at 300-400 ?C
with 1-2 h holding time. After this conditioning, samples have been tested to check their combustion
reactivity by means of non isothermal thermogravimetric analysis. Additionally, combustion experiments
have been carried in a purposely designed suspension reactor at temperatures up to 1000 ?C. Results confirm
that ash pre-conditioning reduces the burn-out time of carbon in ash. The concept has been finalized
into an international patent application. (literal)
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