The objective of this program is to identify the chemical principles governing the deactivation of precipitated iron catalysts during Fischer-Tropsch synthesis and to use these chemical principles in the design of catalysts suitable for slurry reactors. The performance targets are 88% CO+H{sub 2} conversion with less than 1% deactivation/day for 1 month and a methane and ethane selectivity of no more than 7% (based on hydrocarbons and oxygenates only) at a space velocity of at least 2 normal liters per hr per gram iron (NL/hr/gFe) using a synthesis gas with 0.5-1.0 H{sub 2}:CO ratio in a slurry reactor
The objective of this research project is to develop the technology for the production of physically...
The Fischer-Tropsch (F-T) reaction provides a way of converting coal-derived synthesis gas (CO+H{sub...
This report contains the results of a three year study on the preparation of high surface area iron ...
The objective of this program is to identify the chemical principles governing the deactivation of p...
Precipitated iron catalysts are expected to be used in next generation slurry reactors for large-sca...
Fischer-Tropsch catalysts must undergo a pretreatment in order to be active. As part of the authors ...
The goal of the proposed work described in this Final Report was the development of iron-based Fisch...
The goal of the proposed work is the development of iron-based Fischer-Tropsch catalysts that combin...
The goal of the proposed work is the development of iron-based Fischer-Tropsch catalysts that combin...
The goal of the proposed work is the development of iron-based Fischer-Tropsch catalysts that combin...
The objective of this research project is to develop the technology for the production of physically...
The goal of the proposed work is the development of iron-based Fischer-Tropsch catalysts that combin...
The objective of this research project is to develop the technology for the production of physically...
The objective of this research project is to develop the technology for the production of physically...
The objective of this research project is to develop the technology for the production of physically...
The objective of this research project is to develop the technology for the production of physically...
The Fischer-Tropsch (F-T) reaction provides a way of converting coal-derived synthesis gas (CO+H{sub...
This report contains the results of a three year study on the preparation of high surface area iron ...
The objective of this program is to identify the chemical principles governing the deactivation of p...
Precipitated iron catalysts are expected to be used in next generation slurry reactors for large-sca...
Fischer-Tropsch catalysts must undergo a pretreatment in order to be active. As part of the authors ...
The goal of the proposed work described in this Final Report was the development of iron-based Fisch...
The goal of the proposed work is the development of iron-based Fischer-Tropsch catalysts that combin...
The goal of the proposed work is the development of iron-based Fischer-Tropsch catalysts that combin...
The goal of the proposed work is the development of iron-based Fischer-Tropsch catalysts that combin...
The objective of this research project is to develop the technology for the production of physically...
The goal of the proposed work is the development of iron-based Fischer-Tropsch catalysts that combin...
The objective of this research project is to develop the technology for the production of physically...
The objective of this research project is to develop the technology for the production of physically...
The objective of this research project is to develop the technology for the production of physically...
The objective of this research project is to develop the technology for the production of physically...
The Fischer-Tropsch (F-T) reaction provides a way of converting coal-derived synthesis gas (CO+H{sub...
This report contains the results of a three year study on the preparation of high surface area iron ...