The Experts below are selected from a list of 276 Experts worldwide ranked by ideXlab platform

Tomonori Ohba - One of the best experts on this subject based on the ideXlab platform.

  • surface to volume ratio of carbon nanohorn a crucial factor in co2 ch4 Mixture separation
    Chemical Physics Letters, 2014
    Co-Authors: Sylwester Furmaniak, Piotr A. Gauden, Katsumi Kaneko, Artur P. Terzyk, Piotr Kowalczyk, Tomonori Ohba
    Abstract:

    Using the first realistic model of single walled carbon nanohorn and molecular simulation data we show the 3D graphs relating the selectivity of CO2/CH4 separation with a surface to volume ratio of a nanohorn, the total Mixture Pressure and the mole fraction of CO2 in the bulk phase. It is proved that surface to volume ratio is a crucial parameter determining the selectivity. Finally, the equation is proposed, making possible to predict the selectivity of a nanohorn for separation of CO2/CH4 Mixture.

  • Surface to volume ratio of carbon nanohorn – A crucial factor in CO2/CH4 Mixture separation
    Chemical Physics Letters, 2014
    Co-Authors: Sylwester Furmaniak, Piotr A. Gauden, Katsumi Kaneko, Artur P. Terzyk, Piotr Kowalczyk, Tomonori Ohba
    Abstract:

    Using the first realistic model of single walled carbon nanohorn and molecular simulation data we show the 3D graphs relating the selectivity of CO2/CH4 separation with a surface to volume ratio of a nanohorn, the total Mixture Pressure and the mole fraction of CO2 in the bulk phase. It is proved that surface to volume ratio is a crucial parameter determining the selectivity. Finally, the equation is proposed, making possible to predict the selectivity of a nanohorn for separation of CO2/CH4 Mixture

Z. Zurek - One of the best experts on this subject based on the ideXlab platform.

  • A new thermobalance for studies of the high-temperature sulphidation of metals and alloys
    Journal of Thermal Analysis, 1993
    Co-Authors: Z. Zurek
    Abstract:

    Es wird ein neue Apparat zur Untersuchung der Hochtemperatur-Sulfidierung von Metallen in H_2/H_2S Atmosphare beschrieben. Der Unterschied zwischen diesem Apparat und dem fruher benutzten, besteht im Gasdosierungsystem. Wasserstoff reagiert teilweise mit Schwefel, was eine stabile Zusammensetzung des Gasgemisches beim niedrigen Schwefeldampfdruck sichert. Gewichtsmessungen von Metallen und Legierungen konnen in diesem System bei Temperaturen von 1073 bis 1473 K mit einer Genauigkeit von 10^−6 g ausgefuhrt werden. A new thermogravimetric apparatus for studying the kinetics of metal sulphidation in a H_2/H_2S gas Mixture is described. The main difference between this device and other equipment is the application of hydrogen to obtain a H_2/H_2S Mixture at suitable sulphur partial Pressures at a total Mixture Pressure of 1 atm. The use of the carrier gas allows the measurement of sulphidation kinetics under dynamic conditions and consequently over a much wider Pressure range of sulphur vapour, down to 10^−12 atm.

  • a new thermobalance for studies of the high temperature sulphidation of metals and alloys
    Journal of Thermal Analysis and Calorimetry, 1993
    Co-Authors: Z. Zurek
    Abstract:

    A new thermogravimetric apparatus for studying the kinetics of metal sulphidation in a H2/H2S gas Mixture is described. The main difference between this device and other equipment is the application of hydrogen to obtain a H2/H2S Mixture at suitable sulphur partial Pressures at a total Mixture Pressure of 1 atm.

Sylwester Furmaniak - One of the best experts on this subject based on the ideXlab platform.

  • surface to volume ratio of carbon nanohorn a crucial factor in co2 ch4 Mixture separation
    Chemical Physics Letters, 2014
    Co-Authors: Sylwester Furmaniak, Piotr A. Gauden, Katsumi Kaneko, Artur P. Terzyk, Piotr Kowalczyk, Tomonori Ohba
    Abstract:

    Using the first realistic model of single walled carbon nanohorn and molecular simulation data we show the 3D graphs relating the selectivity of CO2/CH4 separation with a surface to volume ratio of a nanohorn, the total Mixture Pressure and the mole fraction of CO2 in the bulk phase. It is proved that surface to volume ratio is a crucial parameter determining the selectivity. Finally, the equation is proposed, making possible to predict the selectivity of a nanohorn for separation of CO2/CH4 Mixture.

  • Surface to volume ratio of carbon nanohorn – A crucial factor in CO2/CH4 Mixture separation
    Chemical Physics Letters, 2014
    Co-Authors: Sylwester Furmaniak, Piotr A. Gauden, Katsumi Kaneko, Artur P. Terzyk, Piotr Kowalczyk, Tomonori Ohba
    Abstract:

    Using the first realistic model of single walled carbon nanohorn and molecular simulation data we show the 3D graphs relating the selectivity of CO2/CH4 separation with a surface to volume ratio of a nanohorn, the total Mixture Pressure and the mole fraction of CO2 in the bulk phase. It is proved that surface to volume ratio is a crucial parameter determining the selectivity. Finally, the equation is proposed, making possible to predict the selectivity of a nanohorn for separation of CO2/CH4 Mixture

Artur P. Terzyk - One of the best experts on this subject based on the ideXlab platform.

  • surface to volume ratio of carbon nanohorn a crucial factor in co2 ch4 Mixture separation
    Chemical Physics Letters, 2014
    Co-Authors: Sylwester Furmaniak, Piotr A. Gauden, Katsumi Kaneko, Artur P. Terzyk, Piotr Kowalczyk, Tomonori Ohba
    Abstract:

    Using the first realistic model of single walled carbon nanohorn and molecular simulation data we show the 3D graphs relating the selectivity of CO2/CH4 separation with a surface to volume ratio of a nanohorn, the total Mixture Pressure and the mole fraction of CO2 in the bulk phase. It is proved that surface to volume ratio is a crucial parameter determining the selectivity. Finally, the equation is proposed, making possible to predict the selectivity of a nanohorn for separation of CO2/CH4 Mixture.

  • Surface to volume ratio of carbon nanohorn – A crucial factor in CO2/CH4 Mixture separation
    Chemical Physics Letters, 2014
    Co-Authors: Sylwester Furmaniak, Piotr A. Gauden, Katsumi Kaneko, Artur P. Terzyk, Piotr Kowalczyk, Tomonori Ohba
    Abstract:

    Using the first realistic model of single walled carbon nanohorn and molecular simulation data we show the 3D graphs relating the selectivity of CO2/CH4 separation with a surface to volume ratio of a nanohorn, the total Mixture Pressure and the mole fraction of CO2 in the bulk phase. It is proved that surface to volume ratio is a crucial parameter determining the selectivity. Finally, the equation is proposed, making possible to predict the selectivity of a nanohorn for separation of CO2/CH4 Mixture

Piotr A. Gauden - One of the best experts on this subject based on the ideXlab platform.

  • surface to volume ratio of carbon nanohorn a crucial factor in co2 ch4 Mixture separation
    Chemical Physics Letters, 2014
    Co-Authors: Sylwester Furmaniak, Piotr A. Gauden, Katsumi Kaneko, Artur P. Terzyk, Piotr Kowalczyk, Tomonori Ohba
    Abstract:

    Using the first realistic model of single walled carbon nanohorn and molecular simulation data we show the 3D graphs relating the selectivity of CO2/CH4 separation with a surface to volume ratio of a nanohorn, the total Mixture Pressure and the mole fraction of CO2 in the bulk phase. It is proved that surface to volume ratio is a crucial parameter determining the selectivity. Finally, the equation is proposed, making possible to predict the selectivity of a nanohorn for separation of CO2/CH4 Mixture.

  • Surface to volume ratio of carbon nanohorn – A crucial factor in CO2/CH4 Mixture separation
    Chemical Physics Letters, 2014
    Co-Authors: Sylwester Furmaniak, Piotr A. Gauden, Katsumi Kaneko, Artur P. Terzyk, Piotr Kowalczyk, Tomonori Ohba
    Abstract:

    Using the first realistic model of single walled carbon nanohorn and molecular simulation data we show the 3D graphs relating the selectivity of CO2/CH4 separation with a surface to volume ratio of a nanohorn, the total Mixture Pressure and the mole fraction of CO2 in the bulk phase. It is proved that surface to volume ratio is a crucial parameter determining the selectivity. Finally, the equation is proposed, making possible to predict the selectivity of a nanohorn for separation of CO2/CH4 Mixture