Measurements of gasification characteristics of coal and char in CO 2-rich gas flow by TG-DTA

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Abstract

Pyrolysis, combustion, and gasification properties of pulverized coal and char in CO2-rich gas flow were investigated by using gravimetric-differential thermal analysis (TG-DTA) with changing O2%, heating temperature gradient, and flow rate of CO2-rich gases provided. Together with TG-DTA, flue gas generated from the heated coal, such as CO, CO2, and hydrocarbons (HCs), was analyzed simultaneously on the heating process. The optimum O2% in CO2-rich gas for combustion and gasification of coal or char was discussed by analyzing flue gas with changing O2 from 0 to 5%. The experimental results indicate that O2% has an especially large effect on carbon oxidation at temperature less than 1100°C, and lower O2 concentration promotes gasification reaction by producing CO gas over 1100°C in temperature. The TG-DTA results with gas analyses have presented basic reference data that show the effects of O2 concentration and heating rate on coal physical and chemical behaviors for the expected technologies on coal gasification in CO2-rich gas and oxygen combustion and underground coal gasification. © 2013 Zhigang Li et al.

Figures

  • Figure 1: Schematic diagram of three kinds of power generation with CO 2 capture.
  • Figure 2: Coal sample in platinum container (≈30mg coal).
  • Table 1: Analysis values of coal (air dried basis).
  • Figure 3: Schematic diagram of experimental apparatus.
  • Table 2: Experimental conditions of temperatures and gas flow rates for the TG-DTA analysis.
  • Figure 4: A typical TG-DTA curve of coal combustion in air (Air flow: 200mL⋅min−1; max. temperature: 1000∘C; heating rate: 20∘C⋅min−1).
  • Figure 6: DTA curves of different gas flow rates and O 2 concentrations in flow gas.
  • Figure 5: TG curves of different gas flow rates and O 2 concentrations in flow gas.

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APA

Li, Z., Zhang, X., Sugai, Y., Wang, J., & Sasaki, K. (2013). Measurements of gasification characteristics of coal and char in CO 2-rich gas flow by TG-DTA. Journal of Combustion, 2013. https://doi.org/10.1155/2013/985687

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