Activated carbon produced by pyrolysis of waste wood and straw for potential wastewater adsorption K Januszewicz, P Kazimierski, M Klein, D Kardaś, J Łuczak Materials 13 (9), 2047, 2020 | 92 | 2020 |
The influence of temperature on the physicochemical properties of products of pyrolysis of leather-tannery waste J Kluska, M Ochnio, D Kardaś, Ł Heda Waste Management 88, 248-256, 2019 | 46 | 2019 |
Waste rubber pyrolysis: Product yields and limonene concentration K Januszewicz, P Kazimierski, T Suchocki, D Kardaś, W Lewandowski, ... Materials 13 (19), 4435, 2020 | 41 | 2020 |
The course and the effects of agricultural biomass pyrolysis in the production of high-calorific biochar P Kazimierski, K Januszewicz, W Godlewski, A Fijuk, T Suchocki, P Chaja, ... Materials 15 (3), 1038, 2022 | 36 | 2022 |
Front velocity in the combustion of blends of poultry litter with straw S Polesek-Karczewska, T Turzyński, D Kardaś Fuel Processing Technology 176, 307-315, 2018 | 35 | 2018 |
Pyrolysis of pruning residues from various types of orchards and pretreatment for energetic use of biochar P Kazimierski, P Hercel, T Suchocki, J Smoliński, A Pladzyk, D Kardaś, ... Materials 14 (11), 2969, 2021 | 33 | 2021 |
Experimental tests of co-combustion of pelletized leather tannery wastes and hardwood pellets J Kluska, T Turzyński, D Kardaś Waste Management 79, 22-29, 2018 | 33 | 2018 |
Thermogravimetric analysis/pyrolysis of used tyres and waste rubber K Januszewicz, M Klein, E Klugmann-Radziemska, D Kardas Physicochemical Problems of Mineral Processing 53, 2017 | 31 | 2017 |
Carbonization of corncobs for the preparation of barbecue charcoal and combustion characteristics of corncob char J Kluska, M Ochnio, D Kardaś Waste management 105, 560-565, 2020 | 30 | 2020 |
Relaxation model for wave phenomena in liquid-vapour bubble flow in channels Z Bilicki., D Kardas, E Michaelides Journal of Fluids Engineering, ASME, 120, 369-377, 1998 | 30 | 1998 |
Characteristics of ash formation in the process of combustion of pelletised leather tannery waste and hardwood pellets J Kluska, T Turzyński, M Ochnio, D Kardaś Renewable energy 149, 1246-1253, 2020 | 29 | 2020 |
The course and effects of syngas production from beechwood and RDF in updraft reactor in the light of experimental tests and numerical calculations D Kardaś, J Kluska, P Kazimierski Thermal Science and Engineering Progress 8, 136-144, 2018 | 28 | 2018 |
Thermal and chemical effects of turkey feathers pyrolysis J Kluska, D Kardaś, Ł Heda, M Szumowski, J Szuszkiewicz Waste management 49, 411-419, 2016 | 26 | 2016 |
Modeling of heat and mass transfer during thermal decomposition of a single solid fuel particle I Wardach-Święcicka, D Kardaś Archives of Thermodynamics 34 (2), 53--71, 2013 | 24 | 2013 |
A novel insight into biomass pyrolysis–The process analysis by identifying timescales of heat diffusion, heating rate and reaction rate D Kardaś, P Hercel, S Polesek-Karczewska, I Wardach-Świȩcicka Energy 189, 116159, 2019 | 22 | 2019 |
Pyrolysis of biomass and refuse-derived fuel performance in laboratory scale batch reactor J Kluska, D Kardaś, P Kazimierski, M Klein Archives of Thermodynamics, 141-152-141-152, 2014 | 22 | 2014 |
Chemical and physical properties of pine wood during pyrolysis K Ronewicz, J Kluska, Ł Heda, D Kardaś Drvna industrija 68 (1), 29-36, 2017 | 19 | 2017 |
Prediction of thermal behavior of pyrolyzed wet biomass by means of model with inner wood structure S Polesek-Karczewska, D Kardaś Journal of Thermal Science 24, 82-89, 2015 | 19 | 2015 |
Study on chicken manure combustion and heat production in terms of thermal self-sufficiency of a poultry farm T Turzyński, J Kluska, D Kardaś Renewable Energy 191, 84-91, 2022 | 18 | 2022 |
Comparative analysis of pelletized and unpelletized sunflower husks combustion process in a batch-type reactor T Turzyński, J Kluska, M Ochnio, D Kardaś Materials 14 (10), 2484, 2021 | 18 | 2021 |