Potassium, Chlorine, and Sulfur in Ash, Particles, Deposits, and Corrosion during Wood Combustion in a Circulating Fluidized-Bed Boiler

The effect of the addition of chlorine and/or sulfur to the fuel on fly ash composition, deposit formation, and superheater corrosion has been studied during biomass combustion in a circulating fluidized-bed boiler. The chlorine (HCl (aq)) and sulfur (SO sub(2) (g)) were added in proportions of rele...

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Bibliographic Details
Published in:Energy & fuels Vol. 21; no. 1; pp. 71 - 81
Main Authors: Davidsson, Kent O, Aamand, Lars-Erik, Leckner, Bo, Kovacevik, Borka, Svane, Maria, Hagstroem, Magnus, Pettersson, Jan BC, Pettersson, Jesper, Asteman, Henrik, Svensson, Jan-Erik, Johansson, Lars-Gunnar
Format: Journal Article
Language:English
Published: 01-01-2007
Online Access:Get full text
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Summary:The effect of the addition of chlorine and/or sulfur to the fuel on fly ash composition, deposit formation, and superheater corrosion has been studied during biomass combustion in a circulating fluidized-bed boiler. The chlorine (HCl (aq)) and sulfur (SO sub(2) (g)) were added in proportions of relevance for the potassium chemistry. The composition of the bottom and the fly ashes was analyzed. Gas and particle measurements were performed downstream of the cyclone before the convection pass and the flue gas composition was recorded in the stack with a series of standard instruments and an FTIR analyzer. At the position downstream of the cyclone, a deposit probe was situated, simulating a superheater tube. Deposits on the probe and initial corrosion were examined. It is concluded that addition of sulfur and chlorine increases the formation of submicron particles leading to deposition of potassium sulfate and chloride. The results compare well with earlier work based on laboratory-scale experiments concerning effects of chlorine and sulfur on potassium chemistry.
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ISSN:0887-0624
1520-5029
DOI:10.1021/ef060306cPII:S0887-0624(06)00306-9