Eltron Research Inc. and team members CoorsTek, Sued Chemie, Argonne National Laboratory, and NORAM are developing an environmentally benign, inexpensive, and efficient method for separating hydrogen from gas mixtures produced during industrial processes, such as coal gasification. This project was motivated by the National Energy Technology Laboratory (NETL) Vision 21 initiative, which seeks to economically eliminate environmental concerns associated with the use of fossil fuels. Currently, this project is focusing on four basic categories of dense membranes: (1) mixed conducting ceramic/ceramic composites, (2) mixed conducting ceramic/metal (cermet) composites, (3) cermets with hydrogen permeable metals, and (4) layered composites contain...
The objective of this project is to develop dense ceramic membranes that, without using an external ...
Nanostructured gas separation membranes are discussed to make an important contribution for CO2 capt...
Hydrogen as a high-quality and clean energy carrier has attracted renewed and ever-increasing attent...
Eltron Research Inc. and team members CoorsTek, Sued Chemie, and Argonne National Laboratory are dev...
Eltron Research Inc. and team members CoorsTek, Sued Chemie, and Argonne National Laboratory are dev...
Eltron Research and team members CoorsTek, McDermott Technology, Sued Chemie, Argonne National Labor...
ITN Energy Systems, along with its team members, the Idaho National Engineering and Environmental La...
Separation of hydrogen from coal gas represents one of the most promising ways to produce alternativ...
Argonne National Laboratory (ANL) and the National Energy Technology Laboratory (NETL) are developin...
The objective of this work is to develop dense ceramic membranes for separating hydrogen from other ...
During this quarter composite layered membrane size was scaled-up and tested for permeation performa...
Catalytic gasification of coal to produce H2- and CH4-rich gases for consumption in molten carbonate...
Fuel cells that convert hydrogen to electricity will play an increasingly important role in the gene...
The objective of this project is to develop dense ceramic membranes that can produce hydrogen via co...
The objective of this project is to develop dense ceramic membranes that, without using an external ...
Nanostructured gas separation membranes are discussed to make an important contribution for CO2 capt...
Hydrogen as a high-quality and clean energy carrier has attracted renewed and ever-increasing attent...
Eltron Research Inc. and team members CoorsTek, Sued Chemie, and Argonne National Laboratory are dev...
Eltron Research Inc. and team members CoorsTek, Sued Chemie, and Argonne National Laboratory are dev...
Eltron Research and team members CoorsTek, McDermott Technology, Sued Chemie, Argonne National Labor...
ITN Energy Systems, along with its team members, the Idaho National Engineering and Environmental La...
Separation of hydrogen from coal gas represents one of the most promising ways to produce alternativ...
Argonne National Laboratory (ANL) and the National Energy Technology Laboratory (NETL) are developin...
The objective of this work is to develop dense ceramic membranes for separating hydrogen from other ...
During this quarter composite layered membrane size was scaled-up and tested for permeation performa...
Catalytic gasification of coal to produce H2- and CH4-rich gases for consumption in molten carbonate...
Fuel cells that convert hydrogen to electricity will play an increasingly important role in the gene...
The objective of this project is to develop dense ceramic membranes that can produce hydrogen via co...
The objective of this project is to develop dense ceramic membranes that, without using an external ...
Nanostructured gas separation membranes are discussed to make an important contribution for CO2 capt...
Hydrogen as a high-quality and clean energy carrier has attracted renewed and ever-increasing attent...