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Mateusz Kudasik
Mateusz Kudasik
Instytut Mechaniki Górotworu Polskiej Akademii Nauk
在 img-pan.krakow.pl 的电子邮件经过验证
标题
引用次数
引用次数
年份
Balance of CO2/CH4 exchange sorption in a coal briquette
B Dutka, M Kudasik, Z Pokryszka, N Skoczylas, J Topolnicki, ...
Fuel processing technology 106, 95-101, 2013
802013
Pore pressure changes accompanying exchange sorption of CO2/CH4 in a coal briquette
B Dutka, M Kudasik, J Topolnicki
Fuel Processing Technology 100, 30-34, 2012
612012
Studies on the competitive sorption of CO2 and CH4 on hard coal
A Pajdak, M Kudasik, N Skoczylas, M Wierzbicki, LTP Braga
International Journal of Greenhouse Gas Control 90, 102789, 2019
412019
The repeatability of sorption processes occurring in the coal-methane system during multiple measurement series
M Kudasik, N Skoczylas, A Pajdak
Energies 10 (5), 661, 2017
322017
CH4 and CO2 sorption and diffusion carried out in various temperatures on hard coal samples of various degrees of coalification
N Skoczylas, A Pajdak, M Kudasik, LTP Braga
Journal of Natural Gas Science and Engineering 81, 103449, 2020
302020
Simplified model of the CO2/CH4 exchange sorption process
J Topolnicki, M Kudasik, B Dutka
Fuel processing technology 113, 67-74, 2013
302013
The use of selected research methods to describe the pore space of dolomite from copper ore mine, Poland
A Pajdak, K Godyń, M Kudasik, T Murzyn
Environmental Earth Sciences 76, 1-16, 2017
262017
Low cost capillary flow meter
M Kudasik, N Skoczylas, J Sobczyk, J Topolnicki
Sensors and Actuators A: Phisical 152 (2), 146-150, 2009
24*2009
Investigating permeability of coal samples of various porosities under stress conditions
M Kudasik
Energies 12 (4), 762, 2019
232019
The manometric sorptomat—An innovative volumetric instrument for sorption measurements performed under isobaric conditions
M Kudasik
Measurement Science and Technology 27 (3), 035903, 2016
212016
Manostat—an accurate gas pressure regulator
M Kudasik, N Skoczylas, J Sobczyk, J Topolnicki
Measurement Science and Technology 21 (8), 085402, 2010
212010
CO2 and CH4 sorption on carbon nanomaterials and coals–Comparative characteristics
A Pajdak, N Skoczylas, A Dębski, J Grzegorek, W Maziarz, M Kudasik
Journal of Natural Gas Science and Engineering 72, 103003, 2019
192019
Results of comparative sorption studies of the coal-methane system carried out by means of an original volumetric device and a reference gravimetric instrument
M Kudasik
Adsorption 23 (4), 613-626, 2017
162017
New instruments and methods for analysing the coal-methane system
N Skoczylas, M Kudasik, M Wierzbicki, T Murzyn
Studia Geotechnica et Mechanica 37 (1), 85-91, 2015
162015
Analyzer for measuring gas contained in the pore space of rocks
M Kudasik, N Skoczylas
Measurement Science and Technology 28 (10), 105901, 2017
152017
Structural and textural characteristics of selected copper-bearing rocks as one of the elements aiding in the assessment of gasogeodynamic hazard
A Pajdak, M Kudasik
Studia Geotechnica et Mechanica 39 (2), 51-59, 2017
112017
The use of a unipore diffusion model to describe the kinetics of methane release from coal spoil in the longwall environment
M Wierzbicki, N Skoczylas, M Kudasik
Studia Geotechnica et Mechanica 39 (2), 81-89, 2017
112017
The validation process of the method of balancing gas contained in the pore space of rocks via rock comminution
M Kudasik, A Pajdak, N Skoczylas
Archives of Mining Sciences 63 (4), 2018
102018
A simple method for measuring basic parameters of the coal—methane system under mining conditions
N Skoczylas, M Wierzbicki, M Kudasik
Journal of Mining Science 54, 522-533, 2018
82018
Use of hydrothermal carbonization and cold atmospheric plasma for surface modification of brewer’s spent grain and activated carbon
K Krochmalny, H Pawlak-Kruczek, N Skoczylas, M Kudasik, A Gajda, ...
Energies 15 (12), 4396, 2022
62022
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