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Małgorzata Olek, Stanisław Kandefer, Wiesław Kaniowski, Witold Żukowski and Jerzy Baron

Literature Cited 1. Klank, M. (2010). The future of coal – a new look at its use, Energy Policy, 10(1), 41–49 (in Polish). 2. Kandefer, S. (1989). Fluidized bed combustion of low-grade fuels and waste , Cracow: Cracow University of Technology Publisher, (in Polish). 3. Baron, J., Bulewicz, E.M., Kandefer, S., Pilawska, M. & Żukowski, W. (2006). Environmentally-friendly Use of Waste Biomass in Protected Areas. Environ. Prot. Eng. 32 (1), 35–40. 4. Porzuczek, J. (2012). Optimization of the fluidized bed boilers operation in nonstationary states. Cracow

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Małgorzata Szynkowska, Ewa Leśniewska, Aleksandra Pawlaczyk, Jadwiga Albińska, Katarzyna Bawolak and Tadeusz Paryjczak

References Steenari B. M., Lindqvist O.: Fly ash characteristics in co-combustion of wood with coal, oil or peat. Fuel 78 ( 1999 ) 479 - 488. Yudovich Y. E., Ketris M. P.: Mercury in coal: a review. Part 2. Coal use and environmental problems. International Journal of Coal Geology 62 ( 2005 ) 135 - 165. COMMISSION STAFF WORKING PAPER. Communication from the Commission to the Council and the European Parliament on Community Strategy Concerning Mercury SEC(2005)101, Brussels

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Maria Żygadło and Magdalena Woźniak

References Choi, S. K., Lee, S., Song, Y. K. & Moon, H. S. (2002). Leaching characteristics of selected Korean fly ashes and its implications for the groundwater composition near the ash mound, Fuel , 81, 1083-1090. http://www.fuelfirst.com http://www.fuelfirst.com Fitianos, K., Tsanikiidi, B. & Voundrias, E. (1998). Leacibility of heavy metals in Greek fly ash from coal combustion, Environ. Int. , 24, 477-486. Jankowski, J., Ward, C. R., French, D. & Groves, S. (2006). Mobility

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Yan Zeng, Hongfang Ma, Haitao Zhang, Weiyong Ying and Dingye Fang

catalytic reduction of NO with hydrocarbons over modified ferrierite. Pol. J. Chem. Tech. 15(2), 10-15. DOI: 10.2478/pjct-2013-0018 11. Shi, P. & Liu, C.J. (2009). Characterization of silica supported nickel catalyst for methanation with improved activity by room temperature plasma treatment. Catal. Lett. 133(1-2), 112-118. DOI: 10.1007/s10562-009-0163-0. 12. Zhao, A.M., Ying, W.Y., Zhang, H.T., Ma, H.F. & Fang, D.Y. (2012). Ni-Al2O3 catalysts prepared by solution combustion method for syngas methanation. Catal. Commun. 17, 34-38. DOI: 10

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Veronika Blahůšková, Jozef Vlček, Barbora Grycová, Dalibor Jančar and Marek Velička

., van Kessel, L.B.M. & Bosgra, O.H. (2005). Model predictive control as a tool for improving the process operation of MSW combustion plants. Waste Managem. 25, 8, 788–798. DOI: 10.1016/j.wasman.2005.03.005. 5. Kuriger, R., Young, D., Mackenzie, M., Sarv, H. & Trembly, J. (2017). Phase analysis of scale deposition in boiler tubes utilizing steam-assisted gravity drainage produced water. J. Therm. Sci. Engineer. Appl. 9 (1), 011009. DOI: 10.1115/1.4034598. 6. Raman, B., Hall, D.M., Shulder, S.J., Caravaggio, M.F. & Lvov, S.N. (2016). An experimental

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Jacek Grams and Katarzyna Bawolak

combustion using TOF-SIMS, Appl. Surf. Sci. , 2003, 203 - 204, 772. Wierzbicka A., Lillieblad L., Pagels J., Strand M., Gudmundsson A., Gharibi A., Swietlicki E., Sanati M., Bohgard M. Particle emissions from district heating units operating on three commonly used biofuels, Atmos. Environ. , 2005, 39, 139. Ham R., Adriaens A., Vaeck L., Adams F., TOF-SIMS, a new versatile technique for the analysis of environmental aerosols, J. Aerosol Sci. , 2000, 31, 396. Hagenhoff B., High Resolution

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Witold Żukowski, Sylwia Englot, Jerzy Baron, Stanisław Kandefer and Małgorzata Olek

References Avedesian, M. M. & Davidson, J. F. (1973). Combustion of carbon particles in a fluidised bed. Trans. Inst. Chem. Eng. 51, 121-131 Stubington, J. F. & Davidson, J. F. (1981). Gas-phase combustion in fluidized beds. AIChE Journal. 27, 59-65 Dennis, J., Hayhurst, A. N. & Mackley, I. G. (1982). The ignition and combustion of propane/air mixtures in a fluidised bed. In Revelling in Reference: 19th Symposium (Int.) on Combustion 8-13 August 1982 (pp. 1205-1212). Haifa

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Witold Żukowski, Jerzy Baron, Jadwiga Zabagło, Stanisław Kandefer and Małgorzata Olek

References Jönsson, D. (2007). Sustainable by Nature, Environmental and Social Report. Retrieved July 10, 2008, from http://www.tetrapak.com/Document%20Bank/env_and_soc_rep.pdf Avedesian, M. M. & Davidson J. F. (1973). Combustion of carbon particles in a fluidised bed. Trans. I. Chem. E. 51a, 121-131. Baron, J., Bulewicz E. M., Kandefer S., Pilawska M. & Żukowski W. (2006). A simple physicochemical view of bubbling FBC. In Revelling in Reference: 19 th International Conference

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Teresa Baczyńska, Józef Głowiński and Adam Hałat

References Williams, F. A. (1985) Combustion Theory. The Benjamin Cummings Publishing Company, Inc., Menelo Park, California, USA. PN-EN 13673-2:2005. Determination of the maximum explosion pressure and the maximum rate of pressure rise of gases and vapours - Part 2: Determination of the maximum pressure rise. Andrews, G. E. & Bradley, D.(1972). Determination of burning velocities: A Critical Review, Comb. Flame , 18, 133 - 153. Bradley, D. & Mitcheson, A

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Paweł Staroń, Zygmunt Kowalski, Kinga Krupa-Żuczek and Zbigniew Wzorek

XI, Slovenska Akademia Vied Kosice, Slovak Republic, 06-07.12.2007, 57-66 (in Polish). PN-88/C-87015. Fertilizers. Methods of investigation of phosphates content (in Polish). PN-97/R-64803. Feed. Feed phosphates (in Polish). PN-81/G04513. Solid fuel. Determination of heat of combustion and calculation calorific value (in Polish). Brandt, S. (2002). Data analysis-statistical and analytical methods. Warsaw (in Polish).