Article ID Journal Published Year Pages File Type
156175 Chemical Engineering Science 2011 9 Pages PDF
Abstract

The flow behaviors in the downer of a large-scale triple-bed circulating fluidized bed (TBCFB) gasifier cold model, which is composed of a downer (Φ 0.1 m×6.5 m), a bubbling fluidized bed (BFB, 0.75×0.27×3.4 m3), a riser (Φ 0.1 m×16.6 m) and a gas-sealing bed (GSB, Φ 0.158 m×5 m), were investigated. Sand particles with a density of 2600 kg/m3 and an average particle size of 128 μm were used as bed materials. Solids mass fluxes were in the range 113–524 kg/m2 s. Average solids holdup in the developed region of the downer increased with increasing solids mass flux. The gas seal between the riser and the downer had a large effect on the solids holdup distribution in the downer. Compared with the solids holdup in the riser, a relatively low solids holdup was formed in the downer even at high solids loadings. A pressure balance model was set up to predict the solids mass flux for this TBCFB system. It was found that the static bed height in the GSB had a great effect on the solids mass flux. The possibilities of achieving a high density solids holdup in a downer were discussed.

Graphical abstractFigure optionsDownload full-size imageDownload high-quality image (51 K)Download as PowerPoint slideHighlights► Flow behaviors in the downer of a large-scale TBCFB gasifier cold model. ► Pressure balance model for predicting solids mass flux in TBCFB system. ► Effect of the static bed height in the GSB on solids mass flux. ► Possibilities of achieving a high density solids holdup in a downer.

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Physical Sciences and Engineering Chemical Engineering Chemical Engineering (General)
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