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2020 | OriginalPaper | Buchkapitel

Aspects Affecting Emission Production from Small Heat Sources

verfasst von : Jozef Jandačka, Michal Holubčík

Erschienen in: Mobility Internet of Things 2018

Verlag: Springer International Publishing

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Abstract

Achieving efficient combustion of solid fuels, especially biomass, with a low negative impact on the environment is rather complicated. Incorrect settings of combustion conditions can cause various problems like increased production of emissions and ineffective using of energy content of burned fuel. Combustion process may be influenced by many factors. This work deals about the impact of various aspects on the production of gaseous emissions, specifically carbon monoxide and oxides of nitrogen, during wood pellet burning in small automatic heat source. During the experiments the impact of amount, temperature and relative humidity of combustion air has been determined. The impact of fuel moisture and fuel supply was also determined. The results showed that all these aspects have a significant impact on the thermal power of heat source and production of carbon monoxide and oxides of nitrogen.

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Literatur
1.
Zurück zum Zitat Lacinák, M., & Ristvej, J. (2017). Smart city, safety and security. Procedia Engineering, 192, 522–527.CrossRef Lacinák, M., & Ristvej, J. (2017). Smart city, safety and security. Procedia Engineering, 192, 522–527.CrossRef
2.
Zurück zum Zitat Ristvej, J., Zagorecki, A., Holla, K., Simak, L., & Titko, M. (2013). Modelling, simulation and information systems as a tool to support decision-making process in crisis management. In Modelling and Simulation 2013—European Simulation and Modelling Conference, ESM 2013 (pp. 71–76). Ristvej, J., Zagorecki, A., Holla, K., Simak, L., & Titko, M. (2013). Modelling, simulation and information systems as a tool to support decision-making process in crisis management. In Modelling and Simulation 2013—European Simulation and Modelling Conference, ESM 2013 (pp. 71–76).
3.
Zurück zum Zitat Pilat, P., Patsch, M., & Malcho, M. (2012). Solar heat utilization for adsorption cooling device. EPJ Web of Conferences, 25, 01074.CrossRef Pilat, P., Patsch, M., & Malcho, M. (2012). Solar heat utilization for adsorption cooling device. EPJ Web of Conferences, 25, 01074.CrossRef
4.
Zurück zum Zitat Nosek, R., Jandacka, J., & Szlek, A. (2011). Simulation of coal combustion process in small boiler. AIP Conference Proceedings, 1337, 43.CrossRef Nosek, R., Jandacka, J., & Szlek, A. (2011). Simulation of coal combustion process in small boiler. AIP Conference Proceedings, 1337, 43.CrossRef
5.
Zurück zum Zitat Deliiski, N., Dzurenda, L., & Brezin, V. (2013). Calculation of the heat energy needed for melting of the ice in wood materials for veneer production. Acta Facultatis Xylologiae Zvolen, 55(2), 21–32. Deliiski, N., Dzurenda, L., & Brezin, V. (2013). Calculation of the heat energy needed for melting of the ice in wood materials for veneer production. Acta Facultatis Xylologiae Zvolen, 55(2), 21–32.
6.
Zurück zum Zitat Zagorecki, K., J. Ristvej, & K. Klupa. (2015). Analytics for protecting critical infrastructure, 2015, In: Communications—Scientific Letters of the University of Zilina, 17(1), (pp. 111–115). Zagorecki, K., J. Ristvej, & K. Klupa. (2015). Analytics for protecting critical infrastructure, 2015, In: Communications—Scientific Letters of the University of Zilina, 17(1), (pp. 111–115).
7.
Zurück zum Zitat Sadaka, S., Johnson, D. M. (2014). Biomass combustion, agriculture and natural resources, 1156. Sadaka, S., Johnson, D. M. (2014). Biomass combustion, agriculture and natural resources, 1156.
8.
Zurück zum Zitat Vitazek, I., Vitazkova, B., & Ploth, J. (2013). Production of gas emissions from biomass heat source. Engineering Mechanics, 20(3/4), 289–298. ISSN 1805-4633. Vitazek, I., Vitazkova, B., & Ploth, J. (2013). Production of gas emissions from biomass heat source. Engineering Mechanics, 20(3/4), 289–298. ISSN 1805-4633.
9.
Zurück zum Zitat Taus, P., & Tausova, M. (2009). Economic analysis of FV power plants according to installed performance. Acta Montanistica Slovaca, 14(1). Taus, P., & Tausova, M. (2009). Economic analysis of FV power plants according to installed performance. Acta Montanistica Slovaca, 14(1).
10.
Zurück zum Zitat Dzurenda, L. (2004). Emission of NO2 from the combustion process of wet wood and bark. Drvna Industrija, 55(1), 19–24. Dzurenda, L. (2004). Emission of NO2 from the combustion process of wet wood and bark. Drvna Industrija, 55(1), 19–24.
11.
Zurück zum Zitat STN EN 14961-2. (2011). Solid biofuels. Fuel specifications and classes. Part 2: wood pellets for non-industrial use. STN EN 14961-2. (2011). Solid biofuels. Fuel specifications and classes. Part 2: wood pellets for non-industrial use.
12.
Zurück zum Zitat STN EN 14774. (2010). Solid biofuels. Determination of moisture content. Oven dry method. STN EN 14774. (2010). Solid biofuels. Determination of moisture content. Oven dry method.
13.
Zurück zum Zitat STN EN 14775. (2010). Solid biofuels. Determination of ash content. STN EN 14775. (2010). Solid biofuels. Determination of ash content.
14.
Zurück zum Zitat STN EN 15210. (2010). Solid biofuels. Determination of mechanical durability of pellets and briquettes. STN EN 15210. (2010). Solid biofuels. Determination of mechanical durability of pellets and briquettes.
15.
Zurück zum Zitat STN EN 14918. (2010). Solid biofuels. Determination of calorific value. STN EN 14918. (2010). Solid biofuels. Determination of calorific value.
16.
Zurück zum Zitat STN EN 15103. (2010). Solid biofuels. Determination of bulk density. STN EN 15103. (2010). Solid biofuels. Determination of bulk density.
17.
Zurück zum Zitat STN EN 303—5. (2012). Heating boilers. Part 5: heating boilers for solid fuels, manually and automatically stoked nominal heat output of up to 500 kW. Terminology, requirements, testing and marking. STN EN 303—5. (2012). Heating boilers. Part 5: heating boilers for solid fuels, manually and automatically stoked nominal heat output of up to 500 kW. Terminology, requirements, testing and marking.
18.
Zurück zum Zitat Nemec, P., Caja, A., & Malcho, M. (2013). Mathematical model for heat transfer limitations of heat pipe. Mathematical and Computer Modelling, 57(1-2), 126–136.MathSciNetCrossRef Nemec, P., Caja, A., & Malcho, M. (2013). Mathematical model for heat transfer limitations of heat pipe. Mathematical and Computer Modelling, 57(1-2), 126–136.MathSciNetCrossRef
19.
Zurück zum Zitat Horak, J., Jankovska, Z., Straka, F., Buryan, P., Kubesa, P., Hopan, F., & Krpec, K. (2013). Problems of determination of characteristic temperatures of biomass ash fusibility (in Czech). Chem, 107(6), 502–509. Horak, J., Jankovska, Z., Straka, F., Buryan, P., Kubesa, P., Hopan, F., & Krpec, K. (2013). Problems of determination of characteristic temperatures of biomass ash fusibility (in Czech). Chem, 107(6), 502–509.
20.
Zurück zum Zitat Industrial Technologies Program. (2004). Improving process heating system performance—sourcebook for industry. Industrial Technologies Program. (2004). Improving process heating system performance—sourcebook for industry.
21.
Zurück zum Zitat Neuenschwander, P., Good, J., Nussbaumer, T. H. Combustion efficiency in biomass furnaces with flue gas condensation, biomass for energy and industry, 10th European Conference and Technology Exhibition June 8–11 1998, Würzburg. Neuenschwander, P., Good, J., Nussbaumer, T. H. Combustion efficiency in biomass furnaces with flue gas condensation, biomass for energy and industry, 10th European Conference and Technology Exhibition June 8–11 1998, Würzburg.
22.
Zurück zum Zitat Dzurenda, L., & Banski, A. (2015). Dependence of the boiler flue gas losses on humidity of wood biomass. Archives of Thermodynamics, 36(4), 77–86.CrossRef Dzurenda, L., & Banski, A. (2015). Dependence of the boiler flue gas losses on humidity of wood biomass. Archives of Thermodynamics, 36(4), 77–86.CrossRef
23.
Zurück zum Zitat Kirsanovs, V., Žandeckis, A., Veidenbergs, I., Blumbergs, I., Gedrovičs, M., & Blumberga, D. (2014). Experimental study on optimisation of the burning process in a small scale pellet boiler due to air supply improvement. Agronomy Research, 12(2), 499–510. Kirsanovs, V., Žandeckis, A., Veidenbergs, I., Blumbergs, I., Gedrovičs, M., & Blumberga, D. (2014). Experimental study on optimisation of the burning process in a small scale pellet boiler due to air supply improvement. Agronomy Research, 12(2), 499–510.
24.
Zurück zum Zitat Werle, S. (2014). Impact of feedstock properties and operating conditions on sewage sludge gasification in a fixed bed gasifier. Waste Management & Research, 32(10), 954–960.CrossRef Werle, S. (2014). Impact of feedstock properties and operating conditions on sewage sludge gasification in a fixed bed gasifier. Waste Management & Research, 32(10), 954–960.CrossRef
25.
Zurück zum Zitat Rimar, M., Fedak, M., Dudinak, P. (2007). Process of nitrogen oxides generation in pressure burners, manufacturing and industrial engineering. issue 3, pp. 81–84. Rimar, M., Fedak, M., Dudinak, P. (2007). Process of nitrogen oxides generation in pressure burners, manufacturing and industrial engineering. issue 3, pp. 81–84.
26.
Zurück zum Zitat Adamczyk, W., Werle, S., & Ryfa, A. (2014). Application of the computational method for predicting NOx reduction within large scale coal-fired boiler. Applied Thermal Engineering, 73, 341–348.CrossRef Adamczyk, W., Werle, S., & Ryfa, A. (2014). Application of the computational method for predicting NOx reduction within large scale coal-fired boiler. Applied Thermal Engineering, 73, 341–348.CrossRef
Metadaten
Titel
Aspects Affecting Emission Production from Small Heat Sources
verfasst von
Jozef Jandačka
Michal Holubčík
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-30911-4_10

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