Fouling deposition characteristic by variation of coal particle size and deposition temperature in DTF (Drop Tube Furnace)

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Abstract

One of the major operation obstacles in gasification process is ash deposition phenomenon. In this investigation, experiment was carried out to examine coal fouling characteristics using a laminar DTF (Drop Tube Furnace) with variation of operating condition such as different coal size, and probe surface temperature. Four different samples of pulverized coal were injected into DTF under various conditions. The ash particles are deposited on probe by impacting and agglomerating action. Fouling grains are made of eutectic compound, which is made by reacting with acid minerals and alkali minerals, in EPMA (Electron Probe Micro-Analysis). And agglomeration area of fouling at top layer is wide more than it of middle and bottom layer. The major mineral factors of fouling phenomenon are Fe, Ca, and Mg. The deposition quantity of fouling increases with increasing particle size, high alkali mineral (Fe, Ca, and Mg) contents, and ash deposition temperature. © Tsinghua University Press, Beijing and Springer-Verlag Berlin Heidelberg 2012.

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APA

Namkung, H., Xu, L. H., Jeon, Y., & Kim, H. (2012). Fouling deposition characteristic by variation of coal particle size and deposition temperature in DTF (Drop Tube Furnace). In Cleaner Combustion and Sustainable World - Proceedings of the 7th International Symposium on Coal Combustion (pp. 170–174). Springer-Verlag Berlin Heidelberg. https://doi.org/10.1007/978-3-642-30445-3_35

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