Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, October--December 1993

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, October--December 1993 PDF Author:
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Category :
Languages : en
Pages : 25

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Book Description
Development of new catalysts is a promising approach to more, efficient coal liquefaction. It has been recognized that dispersed catalysts can be superior to supported catalysts for primary liquefaction of coals, because the control of initial coal dissolution or depolymerization requires infinite contact between the catalyst and coal. The primary objective of this research is to explore the potential of bimetallic dispersed catalysts from heterometallic molecular precursors in their use in model compound liquefaction reactions. This quarterly report describes the use of three precursors in model compound reactions. The first catalyst is a heterometallic complex consisting of two transition metals, Mo and Ni, and sulfur in a single molecule. The second is a thiocubane type complex consisting of cobalt, molybdenum and sulfur. The third is a thiocubane type cluster consisting of iron and sulfur and the fourth, the pure inorganic salt ammonium tetrathiomolybdate (ATM). It was found that the structure and the ligands in the model complexes affect the activity of the resulting catalyst significantly. The optimum reaction at a pressure of 6.9 MPa hydrogen gas varied for different catalysts. The bimetallic catalysts generated in situ from the organometallic precursor are more active than monometallic catalysts like ATTM and the thiocubane type cluster Fe4. Main products are hydrogenated phenanthrene derivatives, like DBP, THP, sym-OHP, cis- and trans-unsym-OHP with minor isomerization products such as sym-OHA. Our results indicate that other transition metal and ligand combinations in the organometallic precursors and the use of another model compound could result in substantially higher conversion activity.

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, October--December 1993

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, October--December 1993 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 25

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Book Description
Development of new catalysts is a promising approach to more, efficient coal liquefaction. It has been recognized that dispersed catalysts can be superior to supported catalysts for primary liquefaction of coals, because the control of initial coal dissolution or depolymerization requires infinite contact between the catalyst and coal. The primary objective of this research is to explore the potential of bimetallic dispersed catalysts from heterometallic molecular precursors in their use in model compound liquefaction reactions. This quarterly report describes the use of three precursors in model compound reactions. The first catalyst is a heterometallic complex consisting of two transition metals, Mo and Ni, and sulfur in a single molecule. The second is a thiocubane type complex consisting of cobalt, molybdenum and sulfur. The third is a thiocubane type cluster consisting of iron and sulfur and the fourth, the pure inorganic salt ammonium tetrathiomolybdate (ATM). It was found that the structure and the ligands in the model complexes affect the activity of the resulting catalyst significantly. The optimum reaction at a pressure of 6.9 MPa hydrogen gas varied for different catalysts. The bimetallic catalysts generated in situ from the organometallic precursor are more active than monometallic catalysts like ATTM and the thiocubane type cluster Fe4. Main products are hydrogenated phenanthrene derivatives, like DBP, THP, sym-OHP, cis- and trans-unsym-OHP with minor isomerization products such as sym-OHA. Our results indicate that other transition metal and ligand combinations in the organometallic precursors and the use of another model compound could result in substantially higher conversion activity.

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, October 1994-December 1994

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, October 1994-December 1994 PDF Author:
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ISBN:
Category :
Languages : en
Pages :

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Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, October, 1995-December 1995

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, October, 1995-December 1995 PDF Author:
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Category :
Languages : en
Pages :

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Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, July--September 1993

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, July--September 1993 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 17

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Book Description
Development of new catalysts is a promising approach to more efficient coal liquefaction. It has been recognized that dispersed catalysts can be superior to supported catalysts for primary liquefaction of coals, because the control of initial coal dissolution or depolymerization requires intimate contact between the catalyst and coal. The primary objective of this research is to explore novel bimetallic dispersed catalysts from heterometallic molecular precursors, that can be used in low concentrations but exhibit high activity for efficient hydroliquefaction of coals under temperature-programmed conditions. This quarterly report describes the preparation of two precursors. The first is a heterometallic complex consisting of two transition metals, Mo and Ni, and sulfur in a single molecule synthesized. The second is a thiocubane type cluster consisting of iron and sulfur.

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, January--March 1993

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, January--March 1993 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 19

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Book Description
The ultimate goal of the present research is to develop novel catalytic hydroliquefaction process using highly active dispersed catalysts. The primary objective of this research is to develop novel bimetallic dispersed catalysts from organometallic molecular precursors, that can be used in low concentrations (

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, April--June 1993

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, April--June 1993 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 25

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Book Description
The ultimate goal of the present research is to develop novel catalytic hydroliquefaction process using highly active dispersed catalysts. The primary objective of this research is to develop novel bimetallic dispersed catalysts from organometallic molecular precursors, that can be used in low concentrations (

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, October--December 1992

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, October--December 1992 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 78

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Book Description
Development of new catalysts is a promising approach to more efficient coal liquefaction. It has been recognized that catalysts are superior to supported catalysts for primary liquefaction of coals, because the control of initial coal dissolution or depolymerization requires intimate contact between the catalyst and coal. This research is a fundamental and exploratory study on catalytic coal liquefaction, with the emphasis on the development of novel bimetallic dispersed catalysts for temperature-programmed liquefaction. The ultimate goal of the present research is to develop novel catalytic hydroliquefaction process using highly active dispersed catalysts. The primary objective of this research is to develop novel bimetallic dispersed catalysts from organometallic molecular that can be used in low precursors concentrations (

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, July-September 1994

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, July-September 1994 PDF Author:
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Category :
Languages : en
Pages :

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Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Quarterly Technical Progress Report, July-September 1995

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Quarterly Technical Progress Report, July-September 1995 PDF Author:
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Category :
Languages : en
Pages :

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Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, January-March, 1995

Novel Bimetallic Dispersed Catalysts for Temperature-programmed Coal Liquefaction. Technical Progress Report, January-March, 1995 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description