General Community Input from Louisville Kentucky (open access)

General Community Input from Louisville Kentucky

Community Input - General - Community Input General - State - Louisville, Kentucky BRAC Commission 2005 regarding recommendations for multiple installations
Date: July 29, 2005
Creator: unknown
Object Type: Text
System: The UNT Digital Library
Community Correspondence  -   Letter fom Jason Dale Royalty - Fort Knox Kentucky (open access)

Community Correspondence - Letter fom Jason Dale Royalty - Fort Knox Kentucky

Community Correspondence - Letter from Jason Dale Royalty regarding moving the Army Armor School and Center to Fort Benning, GA.
Date: July 28, 2005
Creator: unknown
Object Type: Letter
System: The UNT Digital Library
Kentucky Regional Base Hearing (open access)

Kentucky Regional Base Hearing

Regional Hearing - Kentucky Regional Base Hearing with the Kentucky Delegation with Senator Mitch McConnell and Senator Jim Bunning in St. Louis, Missouri.
Date: July 12, 2005
Creator: United States. Defense Base Closure and Realignment Commission.
Object Type: Legal Document
System: The UNT Digital Library
Synthetic Liquid Fuels: Annual Report of the Secretary of the Interior for 1951; Part 1 - Oil from Coal (open access)

Synthetic Liquid Fuels: Annual Report of the Secretary of the Interior for 1951; Part 1 - Oil from Coal

Report issued by the Bureau of Mines over an annual study of synthetic liquid fuel production. Results of the annual study are presented and discussed. This report includes maps, tables, illustrations, and photographs.
Date: July 1952
Creator: unknown
Object Type: Report
System: The UNT Digital Library
Estimate of Known Recoverable Reserves of Coking Coal in Knott County, Kentucky (open access)

Estimate of Known Recoverable Reserves of Coking Coal in Knott County, Kentucky

Report of investigations issued by the U.S. Bureau of Mines regarding the estimates of known reserves of coking coal located in Knott County, Kentucky. The investigation also discusses properties of coal and coal blends from the area. This report includes maps and tables.
Date: July 1952
Creator: Dowd, James J.; Toenges, Albert L.; Abernethy, R. F. & Reynolds, D. A.
Object Type: Report
System: The UNT Digital Library
Executive Correspondence – Letter dtd 06/15/05 to the Commission from Representative Geoff Davis (4th, KY) (open access)

Executive Correspondence – Letter dtd 06/15/05 to the Commission from Representative Geoff Davis (4th, KY)

Executive Correspondence – Letter dtd 06/15/05 to the Commission from Representative Geoff Davis (4th, KY) requesting that Maysville USAR Center be retained.
Date: July 1, 2005
Creator: unknown
Object Type: Letter
System: The UNT Digital Library
Analysis of Devonian Black Shales in Kentucky for Potential Carbon Dioxide Sequestration and Enhanced Natural Gas Production Quarterly Report: April-June 2005 (open access)

Analysis of Devonian Black Shales in Kentucky for Potential Carbon Dioxide Sequestration and Enhanced Natural Gas Production Quarterly Report: April-June 2005

Devonian gas shales underlie approximately two-thirds of Kentucky. In the shale, natural gas is adsorbed on clay and kerogen surfaces. This is analogous to methane storage in coal beds, where CO{sub 2} is preferentially adsorbed, displacing methane. Black shales may similarly desorb methane in the presence of CO{sub 2}. Drill cuttings from the Kentucky Geological Survey Well Sample and Core Library were sampled to determine CO{sub 2} and CH{sub 4} adsorption isotherms. Sidewall core samples were acquired to investigate CO{sub 2} displacement of methane. An elemental capture spectroscopy log was acquired to investigate possible correlations between adsorption capacity and mineralogy. Average random vitrinite reflectance data range from 0.78 to 1.59 (upper oil to wet gas and condensate hydrocarbon maturity range). Total organic content determined from acid-washed samples ranges from 0.69 to 14 percent. CO{sub 2} adsorption capacities at 400 psi range from a low of 14 scf/ton in less organic-rich zones to more than 136 scf/ton. There is a direct correlation between measured total organic carbon content and the adsorptive capacity of the shale; CO{sub 2} adsorption capacity increases with increasing organic carbon content. Initial estimates based on these data indicate a sequestration capacity of 5.3 billion tons of CO{sub …
Date: July 29, 2005
Creator: Nuttall, Brandon C.
Object Type: Report
System: The UNT Digital Library
Analysis of Devonian Black Shales in Kentucky for Potential Carbon Dioxide Sequestration and Enhanced Natural Gas Production Quarterly Report: April-June 2003 (open access)

Analysis of Devonian Black Shales in Kentucky for Potential Carbon Dioxide Sequestration and Enhanced Natural Gas Production Quarterly Report: April-June 2003

CO{sub 2} emissions from the combustion of fossil fuels have been linked to global climate change. Proposed carbon management technologies include geologic sequestration of CO{sub 2}. A possible, but untested, sequestration strategy is to inject CO{sub 2} into organic-rich shales. Devonian black shales underlie approximately two-thirds of Kentucky and are thicker and deeper in the Illinois and Appalachian Basin portions of Kentucky than in central Kentucky. The Devonian black shales serve as both the source and trap for large quantities of natural gas; total gas in place for the shales in Kentucky is estimated to be between 63 and 112 trillion cubic feet. Most of this natural gas is adsorbed on clay and kerogen surfaces, analogous to methane storage in coal beds. In coals, it has been demonstrated that CO{sub 2} is preferentially adsorbed, displacing methane. Black shales may similarly desorb methane in the presence of CO{sub 2}. The concept that black, organic-rich Devonian shales could serve as a significant geologic sink for CO{sub 2} is the subject of current research. To accomplish this investigation, drill cuttings and cores were selected from the Kentucky Geological Survey Well Sample and Core Library. Methane and carbon dioxide adsorption analyses are being performed …
Date: July 28, 2003
Creator: Nuttall, Brandon C.
Object Type: Report
System: The UNT Digital Library