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HERO ID
2584427
Reference Type
Journal Article
Title
Fly ash from a Mexican mineral coal I: Mineralogical and chemical characterization
Author(s)
Medina, A; Gamero, P; Querol, X; Moreno, N; De León, B; Almanza, M; Vargas, G; Izquierdo, M; Font, O
Year
2010
Is Peer Reviewed?
Yes
Journal
Journal of Hazardous Materials
ISSN:
0304-3894
EISSN:
1873-3336
Publisher
ELSEVIER
Location
AMSTERDAM
Volume
181
Issue
1-3
Page Numbers
82-90
Language
English
PMID
20546994
DOI
10.1016/j.jhazmat.2010.04.096
Web of Science Id
WOS:000280601300011
Abstract
The properties of coal fly ash are strongly dependent on the geological origin and the combustion process of the coal. It is important to characterize regional fly ash in detail to ascertain its potential uses as raw material in the production of high value products. The physicochemical properties of fly ash coming from the "Jose Lopez Portillo" coal-fired power plant, Coahuila, Mexico (MFA), are presented in this work. A detailed study of trace elements, the chemical composition of the amorphous phase, thermal stability and the leaching of contaminant elements under different conditions are included. MFA is composed of mullite, quartz, calcite, magnetite and an amorphous phase. This material contains mainly silica (59.6%), alumina (22.8%) and magnetite (5.6%). Its amorphous phase (78.3%) has a high silica (49.4%) and alumina (14.4%) content. According to its mineralogical and chemical composition, MFA is potentially useful as a raw material for making cement, silica, and alumina, as well as low silica/alumina ratio zeolites. Deleterious elements could be removed during the zeolitization process or with an additional acid treatment. Because of its morphological properties and structural and thermal stability, MFA can be used in thermal isolation and refractory materials and as a support for heterogeneous catalysts.
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Vanadium Inhalation
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