Reaction Kinetic Equation for Char Combustion of Underground Coal Gasification

来源 :Journal of China University of Mining & Technology(English E | 被引量 : 0次 | 上传用户:www359795792
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Based on the quasi-steady-state approximation, the dynamic equation of char combustion in the oxidation zone of underground coal gasification (UCG) was derived. The parameters of the dynamic equation were determined at 900℃ using a thermo-gravimetric (TG) analyzer connected to a flue gas analyzer and this equation. The equation was simplified for specific coals, including high ash content, low ash content, and low ash fusibility ones. The results show that 1) the apparent reaction rate constant increases with an increase in volatile matter value as dry ash-free basis,2) the effective coefficient of diffusion decreases with an increase in ash as dry basis, and 3) the mass transfer coefficient is independent of coal quality on the whole. The apparent reaction rate constant, mass-transfer coefficient and effective coefficient of diffusion of six char samples range from 7.51×104 m/s to 8.98×104 m/s, 3.05×106 m/s to 3.23×106 m/s and 5.36×106 m2/s to 8.23×106 m2/s at 900℃, respectively. The parameters of the dynamic equation were determined at 900 ° C using a thermo-gravimetric (TG) analyzer The results was show that 1) the apparent reaction rate constant increases with an increase in volatile matter value as dry ash-free basis, 2) the effective coefficient of diffusion decreases with an increase in ash as dry basis, and 3) the mass transfer coefficient is independent of coal quality on the whole. The apparent reaction rate constant, mass- transfer coefficient and effective coefficient of diffusion of six char samples range from 7.51 × 104 m / s to 8.98 × 104 m / s, 3.05 × 106 m / s to 3.23 × 106 m / s and 5.36 × 106 m2 / s to 8.23 ​​× 106 m2 / s at 900 ℃, respecti vely.
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