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Małgorzata Dzięcioł and Elżbieta Huzar

and combustion of thermoplastic polyesters. Polym. Adv. Technol. 15, 691–700. DOI: 10.1002/pat.526. 12. Gijsman, P. (2013). Review on the thermo-oxidative degradation of polymers during processing and in service. e-Polymers 8(1), 727–760. DOI: 10.1515/epoly.2008.8.1.727. 13. Moltó, J., Font, R. & Conesa, J.A. (2007). Kinetic model of the decomposition of a PET fibre cloth in an inert and air environment. J. Anal. Appl. Pyrol. 79(1–2), 289–296. DOI: 10.1016/j.jaap.2006.12.006. 14. Moltó, J., Font, R. & Conesa, J.A. (2006). Study of the organic

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Sebastian Werle

-based biomass in existing coal-fired power plants for NO x and CO 2 emissions control. Biomass Bioenerg. , 33, 1139-1157. DOI: 10.1016/j.biombioe.2009.04.007. Dagaut P., Lecomte F., Chevallier S., Cathonnet M., 1998. Experimental and detailed kinetic modeling of nitric oxide reduction by a natural gas blend in simulated reburning conditions. Combust. Sci. and Technol. , 139, 329-363. DOI: 10.1080/00102209808952093. Dąbrowski J., Piecuch T., 2011. Mathematical description of combustion process of selected groups of waste

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Mária Čarnogurská, Miroslav Příhoda and Tomáš Brestovič

References Čarnogurská, M., Příhoda, M., 2011. Application of the dimensional analysis in modeling of phenomena in the area of energy , Košice, Vienala s. r. o., 26-42 (In Slovak). Čarnogurská, M., 1998. Dimensional analysis and the theory of similarity and modeling in the practice . Košice, Elfa, s. r. o., 1998, 15-24 (In Slovak). Dzurenda L., 2003. Low-temperature formation of nitrogen oxides in the combustion process of wet wood in fire places heat generators. Acta Mech

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Norbert J. Modliński

., 2008. A numerical study of a utility boiler tangentiallyfired furnace under different operating conditions. Fuel, 87, 3331-3338. DOI: 10.1016/j.fuel.2008.05.014. Browning G., Bryant G., Hurst H., Lucas J., Wall T., 2003. An empirical method for the prediction of coal ash slag viscosity. Energy Fuels, 17, 731-737. DOI: 10.1021/ef020165o. Cundick D., Blanchard R., Maynes D., Tree D., Baxter L., 2007. Thermal transport to a reactor wall with a time varying ash layer. 5th US Combustion Meeting, San Diego, CA, USA, 2007

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Ewa Krzywy-Gawrońska

of the reclamation models . Zesz. Prob. Post. Nauk Rol. 533: 231-238 [in Polish]. 4. Prętnicka, K. (2001). Review of agricultural land use by-products of combustion. Mater. VIII Międzynar. Konf. „Popioły z energetyki”. Międzyzdroje, 227-243 [in Polish]. 5. Rosik-Dulewska, C., Głowala, K., Karwaczyńska, U. & Robak, J. (2008). Elution of heavy metals from granulates produced from municipal sewage deposits and fly-ash of hard and brown coal in the aspect of recycling for fertilization purposes. Archiv. Environm. Protect. 34 (2): 63

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J. Mlnařík and J. Hruška

V důsledku poklesu teploty spalin pod teplotu rosného bodu dochází u řady energetických celků k problémům s korozí vlivem zkondenzovaných kyselin. Dochází tak k značným korozním napadením a poškozením zejména na ohřívácích vzduchu, ekonomizérech, vedeních kouřovodů, ale i v samotném komíně. Ve SVÚM se vyvíjí automatický systém pro kontinuální měření teploty rosného bodu spalin přímo ve spalovacím zařízení. V této práci jsou shrnuty výsledky z dosavadních příprav pilotního provozu v uhelné elektrárně.

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Artur Błaszczuk, Wojciech Nowak and Szymon Jagodzik

References Andersson B.-Å., 1996. Effects of bed particle size on heat transfer in circulating fluidized bed boilers. Powder Technol., 87, 239-248. DOI: 10.1016/0032-5910(96)03092-6. Basu P., Cheng L., 2000. An experimental and theoretical investigation into the heat transfer of a finned water tube in a circulating fluidized bed boiler. Int. J. Energy Res., 24, 291-308. DOI: 10.1002/(SICI)1099-114X(20000325)24:4<291::AID-ER582>3.0.CO;2-I. Basu P., 2006. Combustion and gasification in fluidized beds. Taylor

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Sandile Peta, Chris du Toit, Reshendren Naidoo, Walter Schmitz and Louis Jestin

) flow measurement and control methods for utility boilers. Available at: http://webarchive.nationalarchives.gov.uk/+/http://www.berr.gov.uk/files/file19294.pdf. Peta S., du Toit C., Jestin L.M., Roohani H., 2012. Burner flow controls for safe, reliable, complete and clean combustion. POWER-GEN AFRICA 2012. Johannesburg, South Africa, 6-8 November 2012. van der Merwe J.C., Roohani H., Jestin L.M., Simonin O., van Wyk C., Archary H., 2012. Mastering pulverised fuel distribution to low-NOx burners for safety and environmental protection. POWER-GEN AFRICA

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Charlene Ramsunkar, Chris van Tonder and Walter Schmitz

, 2012. Fossil fuel firing regulations . Regulation edn, Coal Fired Power Stations, ESKOM, Generation Division. Innami Y., Murata, A., Yuki Y., Yoshimura E., 2011. Real-time CO measurement in a coal fired boiler with a TDLS analyser. SICE Annual Conference 2011 , Yokogawa Electric Corporation, Tokyo, Japan, September 13–18, p. 92. Molloy R.C., 1981. Microprocessor based combustion monitoring and control systems utilizing in-situ opacity, oxygen, and CO measurement. The Third Industrial Energy Technology Conference Houston Dynatron Inc ., Wallingford

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Dariusz Asendrych, Paweł Niegodajew and Stanisław Drobniak

References Alie C.F., 2004. CO2 capture with MEA: Integrating the absorption process and steam cycle of an existing coalfired power plant . MSc thesis, University of Waterloo, Waterloo, Ontario, Canada. Asendrych D., Niegodajew P., Drobniak S., 2012. Modelling CO2 capture in post-combustion technology. Nowa Energia , 2, 156-157. Astarita G., Savage D. W., Bisio A., 1983. Gas treating with chemical solvents . Wiley, New York. Barth D., Tondre C., Delpuech J., 1986. Stopped