2000
DOI: 10.1021/ef000105n
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Trace Element Partitioning and Transformations During Combustion of Bituminous and Subbituminous U. S. Coals In a 7-kW Combustion System

Abstract: Mode of occurrence analyses indicate that trace elements (Sb, As, Cd, Cr, Co, Cu, Pb, Hg, Ni, Se, V, and Zn) in the Illinois No. 6 coal are generally associated with relatively large discrete mineral grains, especially pyrite, whereas trace elements in Absaloka coal are much more strongly associated with macerals and fine-grained minerals. These coals were burned using conventional and low-NO x conditions in an ∼7-kW combustion system to evaluate the importance of elemental modes of occurrence, coal properties… Show more

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Cited by 65 publications
(56 citation statements)
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“…Similar low volatility of Cr has been observed in other studies [22,26]. When coal is co-fired with SRF, the RE factor of Cr decreases with increasing share of SRF.…”
Section: Volatility Of Si and Crsupporting
confidence: 88%
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“…Similar low volatility of Cr has been observed in other studies [22,26]. When coal is co-fired with SRF, the RE factor of Cr decreases with increasing share of SRF.…”
Section: Volatility Of Si and Crsupporting
confidence: 88%
“…The trace elements vaporized during combustion would partition to the cyclone ash and filter ash through condensation and/or gas-solid reactions. Both mechanisms would favor the enrichment of trace elements in filter ash [1,[21][22][23], and the RE factor would increase with increasing vaporization degree of trace elements. However, if the vaporization degree of a trace element is fixed, a shift from gas-solid reaction mechanism to condensation mechanism may also result in a higher RE factor.…”
Section: Volatility Of the Trace Elementsmentioning
confidence: 99%
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