The Experts below are selected from a list of 6 Experts worldwide ranked by ideXlab platform

X U Guoy - One of the best experts on this subject based on the ideXlab platform.

  • indirect Coal Liquefication technology and development status
    Inner Mongolia Petrochemical Industry, 2007
    Co-Authors: X U Guoy
    Abstract:

    The characteristics and advantage of indirect Coal Liquefication technology are reviewed by comparing with direct Coal Liquefication technology.The working principle,process routes,chief technology and development status for the production of fuels from Coal are discussed at a detailed level.It is concluded that the development of indirect Coal Liquefication is an essential route to dissolve the shortage of fuel in China.

V D Balsone - One of the best experts on this subject based on the ideXlab platform.

  • development of a dispersed iron catalyst for first stage Coal Liquefication
    Catalysis Today, 1994
    Co-Authors: Anthony V Cugini, D Krastman, R G Lett, V D Balsone
    Abstract:

    Abstract A procedure yielding a very small particle size iron catalyst for Coal liquefaction has been developed at the Pittsburgh Energy Technology Center. This procedure has two important components. The first is incipient wetness impregnation of Coal with an aqueous solution of ferric nitrate (subsequently converted to hydrated iron oxide by contact with ammonium hydroxide). The second is proper time/temperature activation of the iron under a gaseous atmosphere of H2/H2S to produce pyrrhotite. In continuous operations, an optimum preliquefaction temperature of 275° C was observed for the activation of hydrated iron oxide in the presence of Illinois No. 6 Coal. The net effect of proper implementation of this procedure was the development of a finely divided iron catalyst that exhibited high levels of activity in comparisons with molybdenum catalysts.

Anthony V Cugini - One of the best experts on this subject based on the ideXlab platform.

  • development of a dispersed iron catalyst for first stage Coal Liquefication
    Catalysis Today, 1994
    Co-Authors: Anthony V Cugini, D Krastman, R G Lett, V D Balsone
    Abstract:

    Abstract A procedure yielding a very small particle size iron catalyst for Coal liquefaction has been developed at the Pittsburgh Energy Technology Center. This procedure has two important components. The first is incipient wetness impregnation of Coal with an aqueous solution of ferric nitrate (subsequently converted to hydrated iron oxide by contact with ammonium hydroxide). The second is proper time/temperature activation of the iron under a gaseous atmosphere of H2/H2S to produce pyrrhotite. In continuous operations, an optimum preliquefaction temperature of 275° C was observed for the activation of hydrated iron oxide in the presence of Illinois No. 6 Coal. The net effect of proper implementation of this procedure was the development of a finely divided iron catalyst that exhibited high levels of activity in comparisons with molybdenum catalysts.

D Krastman - One of the best experts on this subject based on the ideXlab platform.

  • development of a dispersed iron catalyst for first stage Coal Liquefication
    Catalysis Today, 1994
    Co-Authors: Anthony V Cugini, D Krastman, R G Lett, V D Balsone
    Abstract:

    Abstract A procedure yielding a very small particle size iron catalyst for Coal liquefaction has been developed at the Pittsburgh Energy Technology Center. This procedure has two important components. The first is incipient wetness impregnation of Coal with an aqueous solution of ferric nitrate (subsequently converted to hydrated iron oxide by contact with ammonium hydroxide). The second is proper time/temperature activation of the iron under a gaseous atmosphere of H2/H2S to produce pyrrhotite. In continuous operations, an optimum preliquefaction temperature of 275° C was observed for the activation of hydrated iron oxide in the presence of Illinois No. 6 Coal. The net effect of proper implementation of this procedure was the development of a finely divided iron catalyst that exhibited high levels of activity in comparisons with molybdenum catalysts.

R G Lett - One of the best experts on this subject based on the ideXlab platform.

  • development of a dispersed iron catalyst for first stage Coal Liquefication
    Catalysis Today, 1994
    Co-Authors: Anthony V Cugini, D Krastman, R G Lett, V D Balsone
    Abstract:

    Abstract A procedure yielding a very small particle size iron catalyst for Coal liquefaction has been developed at the Pittsburgh Energy Technology Center. This procedure has two important components. The first is incipient wetness impregnation of Coal with an aqueous solution of ferric nitrate (subsequently converted to hydrated iron oxide by contact with ammonium hydroxide). The second is proper time/temperature activation of the iron under a gaseous atmosphere of H2/H2S to produce pyrrhotite. In continuous operations, an optimum preliquefaction temperature of 275° C was observed for the activation of hydrated iron oxide in the presence of Illinois No. 6 Coal. The net effect of proper implementation of this procedure was the development of a finely divided iron catalyst that exhibited high levels of activity in comparisons with molybdenum catalysts.