ESTONIAN ACADEMY
PUBLISHERS
eesti teaduste
akadeemia kirjastus
PUBLISHED
SINCE 1984
 
Oil Shale cover
Oil Shale
ISSN 1736-7492 (Electronic)
ISSN 0208-189X (Print)
Impact Factor (2022): 1.9
EMISSION OF FINE PARTICULATES FROM OIL SHALE FIRED LARGE BOILERS; pp. 152–161
PDF | doi: 10.3176/oil.2011.1S.07

Authors
T. PARVE, J. Loosaar, M. MAHHOV, A. KONIST
Abstract

Emissions of fine particulates of grade PM2.5 and PM10 from different oil shale (OS) power plant (PP) boilers were studied. Pulverized (PF) and circulat­ing fluidized-bed (CFB) boilers burning oil shale, biomass and retort gas were investigated. Particle emissions from OS boilers were found to be very fine. Over 90% of emitted particulate matter was in the size range of PM10 and 40-60% under the size of 2.5 mm. Distribution of fine particles by size was found to be depending on OS firing mode (PF or CFB). At CFB firing mode the share of the finest fraction PM2.5 was higher than that at PF firing mode. The distribution varied at the same type of different PF boilers, depending on the efficiency of boiler flue gas cleaning system and value of total suspended particulates’ emission (TSP).

References

  1. Health risks of particulate matter from long-range transboundary air pollution. Joint WHO/Convention Task Force on the Health Aspects of Air Pollution.

  2. Health aspects of air pollution with particulate matter, ozone and nitrogen dioxide. Report on a WHO working group. Copenhagen, WHORegional Office for Europe, 2003 (documentEUR/03/5042688). Available from: http:// www.euro.who.int/document/e79097.pdf , accessed 1 October 2005.

  3. Environmental Report of Eesti Energia Ltd. Available from: https://www. energia.ee/en/investor/start.

  4. CEN 13284-1 Stationary source emissions – Determination of low range mass concentration of dust – Part 1: Manual gravimetric method.

  5. Guideline VDI 2066 Part 10. Particulate matter measurement – Dust measure­ment in flowing gases – Measurement of PM10 and PM2.5 emissions at stationary sources by impaction method.

  6. Loosaar, J., Parve, T., Konist, A. Environmental Impact of Estonian Oil Shale CFB Firing // Proceedings of the 20th International Conference on Fluidized Bed Combustion: 20th International Conference on Fluidized Bed Combustion, China, Xi´an, May 18–21, 2009 / Yue, G., Zhang, H., Zhao, C., Luo, Z. (eds.). China: Tsinghua University Press/Springer, 2009. P. 422–428.

  7. Determination of solid particulates PM2.5 and PM10 in flue gases from oil shale boilers at Narva Power Plants Ltd. TTU TED Reports, 1998–2010.

  8. Hotta, A., Parkkonen, R., Hiltunen, M., Arro, H., Loosaar, J., Parve, T., Pihu, T., Prikk, A., Tiikma, T. Experience of Estonian oil shale combustion based on CFB technology at Narva Power Plants // Oil Shale. 2005. Vol. 22, No. 4S. P. 381–398.

  9. Sippula, O., Hokkinen, J., Puustinen, H., Yli-Pirilä, P., Jokiniemi, J. Fine Particle Emissions from Biomass and Heavy Fuel Oil Combustion without Effective Filtration (BIOPOR). – VTT Technical Research Centre of Finland, University of Kuopio, 2007.

10. Fuel combustion in stationary sources. Emission factors for solid fuels. Avail­able from: http://www.iiasa.ac.at/~rains/PM/docs/documentation.html

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