4.7 Article

Structure and reactivity of chars prepared from low-volatile coal under O2/ N2 and O2/CO2 conditions in a flat-flame assisted entrained flow reactor

期刊

ENERGY
卷 261, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.energy.2022.125370

关键词

Oxy-fuel combustion; Flat -flame reactor; Low -volatile coal; Coal char structure; Apparent kinetics

资金

  1. National Natural Science Foundation of China
  2. National Key Research and Development Program of China
  3. China Post-doctoral Science Foundation
  4. [52106145]
  5. [51876075]
  6. [2019YFE0100100]
  7. [2020M672349]

向作者/读者索取更多资源

Accurate assessment of the structural characteristics and reactivity of coal char is crucial for burner design. In this study, the physical-chemical structures and reactivities of low-volatile coal chars were investigated under different conditions. It was found that the CO2 content affected the char yield and specific surface area, and the chemical structures were influenced by different conditions. Moreover, the physical structure characteristics of coal char played a leading role in the apparent reactivity.
Accurate assessment of the structural characteristics and reactivity of coal char is crucial for the design of burners. Chars from low-volatile coal were prepared under O2/N2 (ON) and O2/CO2 (OC) conditions in a flat -flame assisted entrained flow reactor, with bituminous coal as a reference. Both the heating rate and resi-dence time were carefully selected to mimic the conditions used in actual industrial boilers. The physical -chemical structures and reactivities of all chars were characterized using Raman and FTIR spectrometers and thermogravimetric analysis. The physical structure results indicated that a high CO2 content inhibited the char yield and specific surface area of chars from low-volatile anthracite coal, while, for chars from high-volatile bituminous coal, CO2 increased the char yield and specific surface area. For chemical structures, the degree of disorder in the carbon skeleton structures and active functional group contents of all chars prepared under OC conditions were greater than those of chars prepared under ON conditions. Moreover, the apparent reactivity results demonstrated that the physical structure characteristics of coal char played a leading role in the apparent reactivity under investigative conditions.

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