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Nikola Čajová Kantová
Nikola Čajová Kantová
在 uniza.sk 的电子邮件经过验证
标题
引用次数
引用次数
年份
Comparison of particulate matters properties from combustion of wood biomass and brown coal
N Kantová, M Holubčík, J Jandačka, A Čaja
Procedia engineering 192, 416-420, 2017
222017
Simulation of biomass combustion with modified flue gas tract
N Čajová Kantová, S Sładek, J Jandačka, A Čaja, R Nosek
Applied Sciences 11 (3), 1278, 2021
152021
The Performance and Emission Parameters Based on the Redistribution of the Amount of Combustion Air of the Wood Stove
M Holubčík, N Čajová Kantová, J Jandačka, A Čaja
Processes 10 (8), 1570, 2022
102022
Impact of the Speed of Airflow in a Cleanroom on the Degree of Air Pollution
P Mičko, D Hečko, A Kapjor, R Nosek, Z Kolková, P Hrabovský, ...
Applied Sciences 12 (5), 2466, 2022
102022
Dependence of the flue gas flow on the setting of the separation baffle in the flue gas tract
N Čajová Kantová, A Čaja, M Patsch, M Holubčík, P Ďurčanský
Applied sciences 11 (7), 2961, 2021
102021
The impact of bark content in wood pellets on emission production during combustion in small heat source
M Holubcik, J Jandacka, M Palacka, N Kantova, E Jachniak, P Pavlik
Communications-Scientific letters of the University of Zilina 19 (2A), 94-100, 2017
92017
Energy performance of a rotary burner using pellets prepared from various alternative biomass residues
J Trnka, M Holubcik, NC Kantova, J Jandacka
BioResources 16 (4), 6737, 2021
82021
Analyses of pellets produced from spruce sawdust, spruce bark, and pine cones in different proportions
N Čajová Kantová, M Holubčík, A Čaja, J Trnka, J Jandačka
Energies 15 (8), 2725, 2022
62022
Mechanical and energy properties of pellets formed from walnut shells blended with spruce sawdust
NC Kantova, A Caja, P Belány, Z Kolková, P Hrabovsky, D Hecko, ...
BioResources 17 (1), 1881, 2022
52022
Impact of the wood geometric parameters on the particulate matter production in small heat source
M Holubčík, J Jandačka, N Kantová
AIP Conference Proceedings 2000 (1), 2018
52018
The energy assessment of COVID-19 medical waste as a potential fuel
NČ Kantová, R Cibula, A Szlek, A Čaja, R Nosek, P Belany
Energy Reports 9, 4995-5003, 2023
42023
Analysis of ash melting temperatures of agricultural pellets detected during different conditions
N Čajová Kantová, M Holubčík, J Trnka, A Čaja
Fire 6 (3), 88, 2023
42023
Using heat exchanger for construction of electrostatic precipitator in a small heat source
M Holubčík, J Trnka, NČ Kantová
Journal of Electrostatics 128, 103884, 2024
32024
Decreasing solid aerosols from small heat sources using the optimized electrostatic precipitator
M Holubčík, NČ Kantová, J Trnka, J Jandačka
Atmosphere 13 (9), 1438, 2022
32022
Design of a low-cost electrostatic precipitator to reduce particulate matter emissions from small heat sources
J Drga, M Holubčík, N Čajová Kantová, B Červenka
Energies 15 (11), 4148, 2022
32022
Mathematic model for prediction of heat output of small boiler depending on various aspects
M Holubcik, N Kantova, B Cervenka, J Trnka
AIP Conference Proceedings 2118 (1), 2019
32019
Alternative solid fuels combustion in small heat source
M Holubčík, N Kantová, J Jandačka, Z Kolková
MATEC Web of Conferences 168, 2018
32018
Co-combustion investigation of wood pellets blended with FFP2 masks: analysis of the ash melting temperature
N Čajová Kantová, M Holubčík, A Čaja, J Trnka, P Hrabovský, P Belány
Forests 14 (3), 636, 2023
22023
Optimization of discharging electrodes of a multi-chamber electrostatic precipitator for small heat sources
M Holubčík, J Drga, N Čajová Kantová, J Najser, J Frantík
Atmosphere 14 (1), 63, 2022
22022
Energy Consumption Depending on the Durability of Pellets Formed from Sawdust with an Admixture of FFP2 Masks
N Čajová Kantová, P Belány, M Holubčík, A Čaja
Energies 15 (13), 4813, 2022
22022
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