PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Experimental determination of the kinetics of sorption and gas filtration in coal

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents tests set-ups for experiments on sorption kinetics and gas filtration kinetics in a porous medium. It was observed that two phenomena occur in these processes: transportation of gas into the porous solid and settling of gas molecules on the walls of the solid or within its volume. An experiment was carried out in which a thin resistance thermometer was quickly taken out of an argon stream and placed in carbon dioxide or the other way round. The measurement made it possible to determine the sorption time constant. It was demonstrated that the sorption rate is much higher than the filtration rate. Thus, filtration is the process describing the rate at which gas molecules penetrating the porous substance are adsorbed or desorbed. The sorption time constant is not >50 m. In the second experiment, the author determined the rate at which gas is liberated from coal grains. The measurement method was based on measurement of the pressure of desorbing gas in constant volume. The experiment involved measurement of the pressure of the gas liberated from the coal grains in a closed chamber. The kinetic curves obtained in this way were used to determine the carbon dioxide coefficient in coal grains. During the experiment, particular focus was put on the initial stage of gas liberation (up to 0.4 s). The slower process of gas transporting in the porous structure of coal is the transporting of gas through a coal briquette. Experimentally implemented variety of boundary conditions allowed for a more complete verification of the assumed theoretical model and possibly for the exact determination of filtration parameters. The experimental set-up built for this purpose, allows for pressure and temperature measurement on the briquette side surface.
Słowa kluczowe
Wydawca
Rocznik
Strony
254--262
Opis fizyczny
Bibliogr. 23 poz., rys.
Twórcy
autor
  • The Strata Mechanics Research Institute of the Polish Academy of Sciences, Cracow, Poland
Bibliografia
  • [1] Wierzbicki, M., Skoczylas, N., Kudasik, M. (2017). Use of a unipore diffusion model to describe the kinetics of methane release from coal spoil in the longwall environment. Studia Geotechnica et Mechanica, 39(2), 81-89.
  • [2] Skoczylas, N., Topolnicki, J. (2016). The coal-gas system - the effective diffusion coefficient. International Journal of Oil Gas and Coal Technology, 12(4), 412-424.
  • [3] Sevenster, P.G. (1959). Diffusion of gases through coal. Fuel, 38, 403-418.
  • [4] Kudasik, M., Skoczylas, N. (2017). Analyzer for measuring gas contained in the pore space of rocks. Measurement Science and Technology, 28, 10.
  • [5] Skoczylas, N. (2015). Determining the gas permeability coefficient of a porous medium by means of the bubble-counting flow meter. Measurement Science and Technology, 26(8).
  • [6] Młynarczuk, M., Habrat, M., Skoczylas, N. (2016). The application of the automatic search for visually similar geological layers in a borehole in introscopic camera recordings. Measurement, 85, 142-151.
  • [7] Wierzbicki, M., Skoczylas, N. (2014). The outburst risk as a function of the methane capacity and firmness of a coal seam. Archives of Mining Sciences, 59(4), 1023-1031.
  • [8] Dziurzyński, W., Krach, A. (2002). Mathematical model of mine ventilation process interrupted by a rock burst. Archives of Mining Sciences, 47, 333–346.
  • [9] Pajdak, A., Kudasik, M. (2017). Structural and textural characteristics of selected copper-bearing rocks as one of the elements aiding in the assessment of gasogeodynamic hazard. Studia Geotechnica et Mechanica, 39(2), 51-59.
  • [10] Pajdak, A., Godyn, K., Kudasik, M., Murzyn, T. (2017). The use of selected research methods to describe the pore space of dolomite from copper ore mine, Poland. Environmental Earth Sciences, 76(11), 389.
  • [11] Wierzbicki, M., Młynarczuk, M. (2013). Structural aspects of gas and dolomite outburst in Rudna copper mine, Poland. International Journal of Rock Mechanics & Mining Sciences, 57, 113-118.
  • [12] Kawęcka, J. (1988). Kinetyka sorpcji i dyfuzji. Zeszyty Naukowe AGH. Chemia, 8, 115-142.
  • [13] Éttinger, I.L., Rabczenko, S.A. (1988). Metanoperenos v obrazcachugla i ugolnychplastach. ChimijaTverdogoTopliva, 4, 29-34.
  • [14] Korta, A., red. (1990). Badania energii i szybkości desorpcji na węglach wyrzutowych i niewyrzutowych. IMG PAN (Sprawozdanie z prac w problemie CPBP 03.06. Górotwór jako ośrodek wielofazowy), Kraków.
  • [15] Siricar, S. (1981). On the measurement of sorption kinetics by differential test: effect of the heat of sorption. Carbon, 19, 285-288.
  • [16] Timofiejew, D.P. (1967). Adsorptionskinetik (tłum. z ros). Lipsk: VEB.
  • [17] Skoczylas, N., Kudasik, M., Topolnicki, J. (2018). Model studies on saturation of a coal sorbent with gas taking into account the geometry of spatial grains. Przemysl chemiczny, 97(2), 272-276.
  • [18] Kudasik, M., Skoczylas, N., Pajdak A. (2017). The repeatability of sorption processes occurring in the coal-methane system during multiple measurement series. Energies, 10(5), 661.
  • [19] Gawor, M., Skoczylas, N. (2014). Sorption rate of carbon dioxide on coal. Transport in Porous Media, 101(2), 269-279.
  • [20] Kidder, R. E., La Habra (1957). Unsteady flow of gas through a semi-infinite porous medium. Journal of Applied Mechanics, 24, 329-332.
  • [21] Gawor, M. (1993). Sorpcja i dyfuzja gazów w węglu kamiennym. Archives of Mining Sciences, 38, 217-261.
  • [22] Gawor, M. (2004). Wyrzuty węgla i gazu w aspekcie badań eksperymentalnych zjawisk gazodynamicznych w brykietach węglowych nasyconych gazem. Prace IMG PAN. Rozprawy i Monografie nr 7. Kraków 2004. 163.
  • [23] Kudasik, M., Skoczylas, N., Sobczyk, J., Topolnicki, J (2010) Manostat-an accurate gas pressure regulator. Measurement Science and Technology, 21(8).
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0fe4138d-ae79-47be-9641-ce808f6694a3
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.