Influence of Coniferous Wood Conditioning by Pulsed Electric Field on Its Combustion Heat Characteristics

The article presents the impact of sawdust conditioning from coniferous trees with a pulsed electric field (PEF) on the characteristics of the combustion heat. The study used four variants of electric field parameters, i.e., (I) 300 discharges with an electric field intensity of 25 kV center dot cm(...

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Veröffentlicht in:Applied sciences 2021-01, Vol.11 (3), p.983, Article 983
Hauptverfasser: Kielbasa, Pawel, Drozdz, Tomasz, Popardowski, Ernest
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Sprache:eng
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Zusammenfassung:The article presents the impact of sawdust conditioning from coniferous trees with a pulsed electric field (PEF) on the characteristics of the combustion heat. The study used four variants of electric field parameters, i.e., (I) 300 discharges with an electric field intensity of 25 kV center dot cm(-1), (II) 150 discharges with an electric field intensity of 25 kV center dot cm(-1), (III) 300 discharges with an electric field intensity of 30 kV center dot cm(-1), (IV) 150 discharges with an electric field intensity of 30 kV center dot cm(-1). It should be noted that the interval between successive discharges was 10 sec and it was constant for each variant of the experiment. A change in the characteristics of the heat of combustion was found under the influence of a pulsed electric field on sawdust from coniferous trees in each period of the measurement. The highest temperatures were achieved by the interaction of a pulsed electric field with a discharge pulse of 30 kV center dot cm(-1) and the number of discharge cycles amounting to 300, whereas significantly lower temperature values were recorded with the discharge electric field intensity of 25 kV center dot cm(-1). It was found that the longest times from the moment of ignition to reaching the maximum temperature were obtained for the material after the influence of PEF with an electric field intensity of 30 kV center dot cm(-1) and the number of pulses 300 (IV combination), while the shortest time of the analyzed interval was stated for the first combination of the experiment (electric field intensity 25 kV center dot cm(-1) and a number of pulses 150). The use of a pulsed electric field allows modeling the combustion time of a homogeneous material, which enables the improvement of the process control possibilities, and is also important information for the design of devices intended for biomass combustion.
ISSN:2076-3417
2076-3417
DOI:10.3390/app11030983