Search Results

Advanced search parameters have been applied.
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: Eltron Research Inc. and team members CoorsTek, Sued Chemie, and Argonne National Laboratory 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 proj… more
Date: April 30, 2003
Creator: Roark, Shane E.; Sammells, Anthony F.; Mackay, Richard A.; Pitzman, Lyrik Y.; Zirbel, Thomas A.; Schesnack, Stewart et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: Eltron Research Inc., and team members CoorsTek, Sued Chemie, and Argonne National Laboratory 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. This objective is be… more
Date: January 30, 2003
Creator: Roark, Shane E.; Sammells, Anthony F.; Mackay, Richard A.; Pitzman, Lyrik Y.; Zirbel, Thomas A.; Schesnack, Stewart R. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: Eltron Research Inc. and their team members 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. This objective is being pursued using dense membranes based in part on… more
Date: July 30, 2002
Creator: Roark, Shane E.; Sammells, Anthony F.; Mackay, Richard A.; Pitzman, Lyrik Y.; Zirbel, Thomas A.; Barton, Thomas F. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: Eltron Research Inc., and team members CoorsTek, McDermott Technology, inc., Sued Chemie, Argonne National Laboratory, and Oak Ridge National Laboratory 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 as… more
Date: April 30, 2002
Creator: Roark, Shane E.; Sammells, Anthony F.; Mackay, Richard A.; Pitzman, Lyrik Y.; Zirbel, Thomas A.; Barton, Thomas F. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: During this quarter work was continued on characterizing the stability of layered composite membranes under a variety of conditions. Membrane permeation was tested up to 100 hours at constant pressure, temperature, and flow rates. In addition, design parameters were completed for a scale-up hydrogen separation demonstration unit. Evaluation of microstructure and effect of hydrogen exposure on BCY/Ni cermet mechanical properties was initiated. The fabrication of new cermets containing high perme… more
Date: January 28, 2005
Creator: Evenson, Carl R.; Sammells, Anthony F.; Treglio, Richard T.; Fisher, Jim; Balachandran, U.; Kleiner, Richard N. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: During this quarter, work was focused on testing layered composite membranes under varying feed stream flow rates at high pressure. By optimizing conditions, H{sub 2} permeation rates as high as 423 mL {center_dot} min{sup -1} {center_dot} cm{sup -2} at 440 C were measured. Membrane stability was investigated by comparison to composite alloy membranes. Permeation of alloyed membranes showed a strong dependence on the alloying element. Impedance analysis was used to investigate bulk and grain bo… more
Date: July 26, 2004
Creator: Evenson, Carl R.; Sammells, Anthony F.; Mackay, Richard; Treglio, Richard; Rolfe, Sara L.; Blair, Richard et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: The objective of this project is to develop an environmentally benign, inexpensive, and efficient method for separating hydrogen from gas mixtures produced during industrial processes, such as coal gasification. 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 with hydrogen permeable alloys… more
Date: January 30, 2004
Creator: Roark, Shane E.; Sammells, Anthony F.; Mackay, Richard; Morrison, Scott R.; Rolfe, Sara L.; Balachandran, U. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: During this quarter composite layered membrane size was scaled-up and tested for permeation performance. Sintering conditions were optimized for a new cermet containing a high permeability metal and seals were developed to allow permeability testing. Theoretical calculations were performed to determine potential sulfur tolerant hydrogen dissociation catalysts. Finally, work was finalized on mechanical and process & control documentation for a hydrogen separation unit.
Date: October 31, 2005
Creator: Evenson, Carl R.; Wright, Harold A.; Calihman, Adam E.; Balachandran, U.; Kleiner, Richard N.; Stephan, James E. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: During this quarter catalyst stability studies were performed on Eltron's composite layered membranes. In addition, permeation experiments were performed to determine the effect of crystallographic orientation on membrane performance. Sintering conditions were optimized for preparation of new cermets containing high permeability metals. Theoretical calculations were performed to determine potential sulfur tolerant catalysts. Finally, work was continued on mechanical and process & control docume… more
Date: July 29, 2005
Creator: Evenson, Carl R.; Sammells, Anthony F.; Treglio, Richard T.; Calihman, Adam E.; Balachandran, U.; Kleiner, Richard N. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuels Plants

Description: Eltron Research Inc. and team members CoorsTek, Sued Chemie, and Argonne National Laboratory 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 proj… more
Date: July 31, 2003
Creator: Roark, Shane E.; Sammells, Anthony F.; Mackay, Richard; Schesnack, Stewart; Morrison, Scott; Zirbel, Thomas A. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: 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. Over the past… more
Date: October 30, 2003
Creator: Roark, Shane E.; Sammells, Anthony F.; Mackay, Richard; Schesnack, Stewart R.; Morrison, Scott R.; Barton, Thomas F. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: During this quarter, work was focused on testing layered composite membranes under varying feed stream flow rates at high pressure. By optimizing conditions, H{sub 2} permeation rates in excess of 400 mL {center_dot} min{sup -1} {center_dot} cm{sup -2} at 440 C were measured. Membrane stability was characterized by repeated thermal and pressure cycling. The effect of cermet grain size on permeation was determined. Finally, progress is summarized on thin film cermet fabrication, catalyst develop… more
Date: April 26, 2004
Creator: Evenson, Carl R.; Sammells, Anthony F.; Mackay, Richard; Morrison, Scott R.; Rolfe, Sara L.; Blair, Richard et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants Quarterly Report

Description: During this quarter long term and high pressure hydrogen separation experiments were performed on Eltron's composite layered membranes. Membranes were tested at 400 C and a 300 psig feed stream with 40% hydrogen for up to 400 continuous hours. In addition membranes were tested up to 1000 psig as demonstration of the ability for this technology to meet DOE goals. Progress was made in the development of new hydrogen separation cermets containing high permeability metals. A sulfur tolerant catalys… more
Date: April 30, 2005
Creator: Evenson, Carl R.; Sammells, Anthony F.; Treglio, Richard T.; Calihman, Adam E.; Balachandran, U.; Kleiner, Richard N. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: During this quarter, work was focused on characterizing the stability of layered composite membranes in a one hundred percent permeate environment. Permeation data was also collected on cermets as a function of thickness. A thin film deposition procedure was used to deposit dense thin BCY/Ni onto a tubular porous support. Thin film tubes were then tested for permeation at ambient pressure. Process flow diagrams were prepared for inclusion of hydrogen separation membranes into IGCC power plants … more
Date: October 21, 2004
Creator: Evenson, Carl R.; Sammells, Anthony F.; Treglio, Richard T.; Balachandran, U.; Kleiner, Richard N.; Stephan, James E. et al.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: 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, th… more
Date: April 30, 2006
Creator: Evenson, Carl R.; Kleiner, Richard N.; Stephan, James E. & Anderson, Frank E.
Partner: UNT Libraries Government Documents Department
open access

Advanced Hydrogen Transport Membranes for Vision 21 Fossil Fuel Plants

Description: During this quarter of the no cost extension a cermet composition referred to as EC101 containing a high permeability metal and a ceramic phase was prepared for sealing and permeability testing. Several different types of seals were developed and tested. In addition membrane surface stability was characterized.
Date: January 31, 2006
Creator: Evenson, Carl R.; Kleiner, Richard N.; Stephan, James E. & Anderson, Frank E.
Partner: UNT Libraries Government Documents Department
Back to Top of Screen