A novel process configuration consisting of integrating the air separation unit with a H2 separation membrane reactor (HSMR) in a coal gasification based coproduction facility with near zero emissions is described. The plant utilizes an air separation unit operating at elevated pressure to produce an Intermediate Pressure (IP) N2 stream in addition to the O2 required by the coal gasifier. The syngas produced by the gasifier after cleanup is supplied to the membrane reactor which produces H2 by shifting the carbon monoxide while simultaneously separating the fy. The IP N2 is used as sweep gas to assist in the separation of the H 2 diffusing across the membrane walls by decreasing the partial pressure of the H2 on the permeate side. The total...
Removing carbon dioxide from power plant flue gases is an increasingly important separation task to ...
This work details the findings from sizing and costing of a 250MW hydrogen plant capable of purifyin...
AbstractThis paper describes an investigation for multi-stage systems used in coal-fired power plant...
This paper summarizes a series of studies examining the prospective performance and cost of faciliti...
Gasification of coal when associated with carbon dioxide capture and sequestration has the potential...
Gas Technology Institute is developing a novel concept of membrane gasifier for high efficiency, cle...
AbstractTo facilitate the use of hydrogen in integrated gasification combined-cycle applications, hy...
Catalytic gasification of coal to produce H{sub 2}-, CO-, and CH{sub 4}-rich mixtures of gases for c...
Abstract This chapter deals with the application of membranes for oxygen and hydrogen separation in ...
Gas Technology Institute is developing a novel concept of membrane gasifier for high efficiency, cle...
2013-07-31IGCC power plants show promise for environmentally-benign power generation. In these plant...
High temperature membrane separation techniques have been applied to gas mixtures involved in coal u...
A novel hybrid concept is proposed, combining Pd-alloy membrane and low temperature separation techn...
This final report describes work conducted for the Department of Energy (DOE NETL) on development of...
Gas Technology Institute has developed a novel concept of a membrane reactor closely coupled with a ...
Removing carbon dioxide from power plant flue gases is an increasingly important separation task to ...
This work details the findings from sizing and costing of a 250MW hydrogen plant capable of purifyin...
AbstractThis paper describes an investigation for multi-stage systems used in coal-fired power plant...
This paper summarizes a series of studies examining the prospective performance and cost of faciliti...
Gasification of coal when associated with carbon dioxide capture and sequestration has the potential...
Gas Technology Institute is developing a novel concept of membrane gasifier for high efficiency, cle...
AbstractTo facilitate the use of hydrogen in integrated gasification combined-cycle applications, hy...
Catalytic gasification of coal to produce H{sub 2}-, CO-, and CH{sub 4}-rich mixtures of gases for c...
Abstract This chapter deals with the application of membranes for oxygen and hydrogen separation in ...
Gas Technology Institute is developing a novel concept of membrane gasifier for high efficiency, cle...
2013-07-31IGCC power plants show promise for environmentally-benign power generation. In these plant...
High temperature membrane separation techniques have been applied to gas mixtures involved in coal u...
A novel hybrid concept is proposed, combining Pd-alloy membrane and low temperature separation techn...
This final report describes work conducted for the Department of Energy (DOE NETL) on development of...
Gas Technology Institute has developed a novel concept of a membrane reactor closely coupled with a ...
Removing carbon dioxide from power plant flue gases is an increasingly important separation task to ...
This work details the findings from sizing and costing of a 250MW hydrogen plant capable of purifyin...
AbstractThis paper describes an investigation for multi-stage systems used in coal-fired power plant...