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Number of results
2013 | 34 | 3 | 393-401

Article title

Mineral Matter Transformation in OXY-Fuel Coal Combustion

Content

Title variants

Languages of publication

EN

Abstracts

EN
The paper presents the results of the mechanical, electrical, CCSEM and XRD measurements of hard coal, conducted in simulated conditions of sintering in atmospheres of O2/CO2,. The changes of the coal ash resistivity are correlated with the content of the oxides and with the sintering temperature determined by the mechanical test and Leitz method. The SEM-EDS analysis was conducted for deposits on the probe. The changes of the measured ash samples, observed during sintering process in O2/CO2 atmosphere, were discussed in the ash microstructure point of view.

Keywords

Publisher

Year

Volume

34

Issue

3

Pages

393-401

Physical description

Dates

published
1 - 09 - 2013
online
08 - 10 - 2013

Contributors

  • Wrocław University of Technology, Department of Mechanical and Power Engineering, Energy Engineering and Technology Division, Wybrzeże Wyspiańskiego 27, 50 – 370 Wrocław, Poland
  • Wrocław University of Technology, Department of Mechanical and Power Engineering, Energy Engineering and Technology Division, Wybrzeże Wyspiańskiego 27, 50 – 370 Wrocław, Poland
  • Wrocław University of Technology, Department of Mechanical and Power Engineering, Energy Engineering and Technology Division, Wybrzeże Wyspiańskiego 27, 50 – 370 Wrocław, Poland
  • Wrocław University of Technology, Department of Mechanical and Power Engineering, Energy Engineering and Technology Division, Wybrzeże Wyspiańskiego 27, 50 – 370 Wrocław, Poland

References

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  • Moroń W., Rybak W., 2002. Mechanical method for determining the ash sintering temperature. Energetyka 2002. Science and Technology Conference. Wrocław, 6-8 November 2002. Wrocław University of Technology, 503-508.
  • Płaza P., Ferens W., Rybak W., 2006. Pressure method for determining the ash sintering temperature. Systems, 11, 517-524.
  • Raask E., 1979. Sintering characteristics of coal ashes by simultaneous dilatometry-electrical conductance measurements. J. Therm. Anal., 16, 91-102.
  • Wall T., Yinghui L., Spero C., Elliott L., Khare S., Rathnam R., Zeenathal F., Moghtaderi B., Buhre B., Sheng C., Gupta R., Yamada T., Makino K., Yu Jianglong, 2009. An overview on oxyfuel coal combustion-State of the art research and technology development. Chem. Eng. Res. Des., 87, 1003-1016. DOI: 10.1016/j.cherd.2009.02.005.[WoS][Crossref]
  • Werther J., Ogada T., 1999. Sewage sludge combustion. Prog. Energy Combust. Sci., 25, 55-116. DOI: 10.1016/S0360-1285(98)00020-3.[Crossref]
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  • Zhang L., Ito M., Sato A., Ninomia Y., Sakano Ch., Masumi M., Shang L., 2004. Combustibility of dried sewage sludge and its mineral transformation at different oxygen content in drop tube furnace. Fuel Process. Technol., 85, 983-1011. DOI: 10.1016/j.fuproc.2003.10.021.[Crossref]

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.-psjd-doi-10_2478_cpe-2013-0032
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