The overall objective of this program was to develop regenerable sorbents for use in the temperature range of 343 to 538 C (650 to 1000 F) to remove hydrogen sulfide (H{sub 2}S) from coal-derived fuel gases in a fluidized-bed reactor. The goal was to develop sorbents that are capable of reducing the H{sub 2}S level in the fuel gas to less than 20 ppmv in the specified temperature range and pressures in the range of 1 to 20 atmospheres, with chemical characteristics that permit cyclic regeneration over many cycles without a drastic loss of activity, as well as physical, characteristics that are compatible with the fluidized bed application. This topical report focuses on the investigation directed toward preparation of zinc-based sorbents us...
The objective of this project was to develop hot-gas desulfurization sorbent formulations for relati...
Successful development of regenerable mixed-metal oxide sorbents for removal of reduced sulfur speci...
The overall objective of this project is to develop regenerable sorbents for hot gas desulfurization...
The overall objective of this program was to develop regenerable sorbents for use in the temperature...
The overall objective of this program is to develop regenerable sorbents for hydrogen sulfide remova...
The objective of this study is to develop hot-gas cleanup sorbents for relatively lower temperature ...
The objectives of this project are to develop hot-gas cleanup sorbents for relatively lower temperat...
Phillips Petroleum Company (PPCo) successfully developed a fluidizable version of their proprietary ...
Primary issues for the fluidized-bed/transport reactor process are high attrition resistant sorbent,...
The objective of this project is to develop advanced hot-gas desulfurization sorbents for relatively...
The techniques employed in this project have successfully demonstrated the feasibility of preparing ...
In this program, the effort is geared towards developing advanced mixed-metal oxide sorbents for des...
Coal Fired Gasifier Combined Cycles (GCC) have both high efficiency and very low emissions. GCCs nee...
The overall objective of this project is to develop regenerable sorbents for hot gas desulfurization...
This paper discusses the results obtained in an ongoing study geared towards developing advanced mix...
The objective of this project was to develop hot-gas desulfurization sorbent formulations for relati...
Successful development of regenerable mixed-metal oxide sorbents for removal of reduced sulfur speci...
The overall objective of this project is to develop regenerable sorbents for hot gas desulfurization...
The overall objective of this program was to develop regenerable sorbents for use in the temperature...
The overall objective of this program is to develop regenerable sorbents for hydrogen sulfide remova...
The objective of this study is to develop hot-gas cleanup sorbents for relatively lower temperature ...
The objectives of this project are to develop hot-gas cleanup sorbents for relatively lower temperat...
Phillips Petroleum Company (PPCo) successfully developed a fluidizable version of their proprietary ...
Primary issues for the fluidized-bed/transport reactor process are high attrition resistant sorbent,...
The objective of this project is to develop advanced hot-gas desulfurization sorbents for relatively...
The techniques employed in this project have successfully demonstrated the feasibility of preparing ...
In this program, the effort is geared towards developing advanced mixed-metal oxide sorbents for des...
Coal Fired Gasifier Combined Cycles (GCC) have both high efficiency and very low emissions. GCCs nee...
The overall objective of this project is to develop regenerable sorbents for hot gas desulfurization...
This paper discusses the results obtained in an ongoing study geared towards developing advanced mix...
The objective of this project was to develop hot-gas desulfurization sorbent formulations for relati...
Successful development of regenerable mixed-metal oxide sorbents for removal of reduced sulfur speci...
The overall objective of this project is to develop regenerable sorbents for hot gas desulfurization...