4.7 Article

Sulfur evolution from coal combustion in O2/CO2 mixture

Journal

JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS
Volume 86, Issue 2, Pages 269-273

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jaap.2009.07.004

Keywords

O-2/CO2 combustion; Sulfur evolution; O-2 concentration; Sulfur retention

Funding

  1. Special Funds for Major State Basic Research Projects of China [2006CB705806]
  2. National Natural Science Foundation [50876021]
  3. Foundation for Excellent Doctoral Dissertation of Southeast University

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O-2/CO2 coal combustion technology is considered as one of the most promising technologies for CO2 sequestration due to its economical advantages and technical feasibility. It is significant to study the sulfur transfer behavior of coal in O-2/CO2 atmosphere for organizing combustion properly and controlling SO2 emission effectively. To clarify the effect of atmosphere on the sulfur transfer behavior, thermogravimetry coupled with Fourier Transform Infrared (TG-FTIR) system was employed to study the formation behavior of sulfur-containing gas species from Xuzhou bituminous coal pyrolysis in CO2 atmosphere compared with that in N-2 atmosphere. Also the SO2 formation behaviors during Xuzhou bituminous coal combustion in O-2/N-2 and O-2/CO2 atmospheres were investigated. Results show that COS is preferentially formed during the coal pyrolysis process in CO2 atmosphere rather than in N-2 atmosphere. When temperature is above 1000 K, sulfate in the CO2 atmosphere begins to decompose due to the reduction effect of CO, which comes from the CO2 gasification. During coal combustion process, replacing N-2 with CO2 enhances the SO2 releasing rate. SO2 emission increases first and then decreases as O-2 fraction increases in the O-2/CO2 mixture. XPS result of the ash after combustion indicates that higher O-2 concentration elevates the sulfur retention ability of the mineral matter in the coal. (C) 2009 Elsevier B.V. All rights reserved.

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