The overall objective of this project is to develop regenerable sorbents for hot gas desulfurization in IGCC systems. The specific objective of the project is to develop durable advanced sorbents that demonstrate a strong resistance to attrition and chemical deactivation, and high activity at temperatures as low as 343{degrees}C (650{degrees}F). A number of formulations will be prepared and screened in a 1/2-inch fixed bed reactor at high pressure (1 to 20 atm) and high temperatures using simulated coal-derived fuel-gases. Screening criteria will include, chemical reactivity, stability, and regenerability over the temperature range of 343{degrees}C to 650{degrees}C. After initial screening, at least 3 promising formulations will be tested f...
The overall objective of this program was to develop regenerable sorbents for use in the temperature...
The US Department of Energy is currently developing Integrated Gasification combined Cycle (IGCC) sy...
Primary issues for the fluidized-bed/transport reactor process are high attrition resistant sorbent,...
The overall objective of this project is to develop regenerable sorbents for hot gas desulfurization...
The overall objective of this project is to develop regenerable sorbents for hot gas desulfurization...
The objective of this study is to develop hot-gas cleanup sorbents for relatively lower temperature ...
The objective of this study was to develop advanced regenerable sorbents for hot gas desulfurization...
The objectives of this project are to develop hot-gas cleanup sorbents for relatively lower temperat...
Integrated gasification combined cycle (IGCC) power systems are being advanced worldwide for generat...
The objective of this project was to develop hot-gas desulfurization sorbent formulations for relati...
The overall objective of this program is to develop regenerable sorbents for hydrogen sulfide remova...
Advanced integrated gasification combined cycle (IGCC) power plants nearing completion, such as Sier...
The techniques employed in this project have successfully demonstrated the feasibility of preparing ...
The overall objective of this study is to determine the effectiveness of the copper-chromite sorbent...
Using regenerable sorbents and transport or fluid-bed contacting, the Gas Process Development Unit (...
The overall objective of this program was to develop regenerable sorbents for use in the temperature...
The US Department of Energy is currently developing Integrated Gasification combined Cycle (IGCC) sy...
Primary issues for the fluidized-bed/transport reactor process are high attrition resistant sorbent,...
The overall objective of this project is to develop regenerable sorbents for hot gas desulfurization...
The overall objective of this project is to develop regenerable sorbents for hot gas desulfurization...
The objective of this study is to develop hot-gas cleanup sorbents for relatively lower temperature ...
The objective of this study was to develop advanced regenerable sorbents for hot gas desulfurization...
The objectives of this project are to develop hot-gas cleanup sorbents for relatively lower temperat...
Integrated gasification combined cycle (IGCC) power systems are being advanced worldwide for generat...
The objective of this project was to develop hot-gas desulfurization sorbent formulations for relati...
The overall objective of this program is to develop regenerable sorbents for hydrogen sulfide remova...
Advanced integrated gasification combined cycle (IGCC) power plants nearing completion, such as Sier...
The techniques employed in this project have successfully demonstrated the feasibility of preparing ...
The overall objective of this study is to determine the effectiveness of the copper-chromite sorbent...
Using regenerable sorbents and transport or fluid-bed contacting, the Gas Process Development Unit (...
The overall objective of this program was to develop regenerable sorbents for use in the temperature...
The US Department of Energy is currently developing Integrated Gasification combined Cycle (IGCC) sy...
Primary issues for the fluidized-bed/transport reactor process are high attrition resistant sorbent,...