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Grassland/Atmosphere Response to Changing Climate: Coupling Regional and Local Scales. Final Report (open access)

Grassland/Atmosphere Response to Changing Climate: Coupling Regional and Local Scales. Final Report

The objectives of the study were: to evaluate the response of grassland ecosystems to atmospheric change at regional and site scales, and to develop multiscaled modeling systems to relate ecological and atmospheric models with different spatial and temporal resolutions. A menu-driven shell was developed to facilitate use of models at different temporal scales and to facilitate exchange information between models at different temporal scales. A detailed ecosystem model predicted that C{sub 3} temperate grasslands wig respond more strongly to elevated CO{sub 2} than temperate C{sub 4} grasslands in the short-term while a large positive N-PP response was predicted for a C{sub 4} Kenyan grassland. Long-term climate change scenarios produced either decreases or increases in Colorado plant productivity (NPP) depending on rainfall, but uniform increases in N-PP were predicted in Kenya. Elevated CO{sub 2} is likely to have little effect on ecosystem carbon storage in Colorado while it will increase carbon storage in Kenya. A synoptic climate classification processor (SCP) was developed to evaluate results of GCM climate sensitivity experiments. Roughly 80% agreement was achieved with manual classifications. Comparison of lx and 2xCO{sub 2} GCM Simulations revealed relatively small differences.
Date: October 1, 1993
Creator: Coughenour, M. B.; Kittel, T. G. F.; Pielke, R. A. & Eastman, J.
Object Type: Report
System: The UNT Digital Library
Annual report on the US Department of Energy`s cultural resource activities at Colorado UMTRA Project sites for October 1991--September 1992 (open access)

Annual report on the US Department of Energy`s cultural resource activities at Colorado UMTRA Project sites for October 1991--September 1992

This report summarizes the US Department of Energy`s (DOE) cultural resource studies that were undertaken in support of the DOE`s Uranium Mill Tailings Remedial Action (UMTRA) Project in the state of Colorado for the period of October 1, 1991, through September 30, 1992. This report fulfills the DOE`s obligation to provide an annual report to the state of Colorado on the status and results of cultural resource studies conducted during the above period of record. This requirement is stated in a programmatic memorandum of agreement executed between the DOE, the Advisory Council on Historic Preservation, and the Colorado State Historic Preservation Officer in December 1984. Previous reports were based on a calendar year reporting period. However, in order to be more consistent with the programmatic memorandum of agreement, the period of record for this and subsequent annual reports has been changed to the Federal fiscal year. The current status and summaries of 1992 cultural resource surveys are provided for all UMTRA Project sites in Colorado. The sites are Durango, Grand Junction, Gunnison, Maybell, Naturita, Rifle, and Slick Rock.
Date: October 6, 1993
Creator: unknown
Object Type: Report
System: The UNT Digital Library
Direct Methane Conversion to Methanol. Annual Report, October 1, 1992--September 30, 1993 (open access)

Direct Methane Conversion to Methanol. Annual Report, October 1, 1992--September 30, 1993

We proposed to demonstrate the effectiveness of a catalytic membrane reactor (a ceramic membrane combined with a catalyst) to selectively produce methanol by partial oxidation of methane. Methanol is used as a chemical feedstock, gasoline additive, and turbine fuel. Methane partial oxidation using a catalytic membrane reactor has been determined as one of the promising approaches for methanol synthesis from methane. In the original proposal, the membrane was used to selectively remove methanol from the reaction zone before carbon oxides form, thus increasing the methanol yield. Methanol synthesis and separation in one step would also make methane more valuable for producing chemicals and fuels. The cooling tube inserted inside the membrane reactor has created a low temperature zone that rapidly quenches the product stream. This system has proved effective for increasing methanol selectivity during CH{sub 4} oxidation. The membranes broke during experiments, however, apparently because of the large radial thermal gradient and axial thermal expansion difference. Our efforts concentrated on improving the membrane lifetime by modifying this non-isothermal membrane reactor.
Date: October 1, 1993
Creator: Noble, R. D. & Falconer, J. L.
Object Type: Report
System: The UNT Digital Library
[News Clip: Denver Snow] captions transcript

[News Clip: Denver Snow]

B-roll video footage from the KXAS-TV/NBC station in Fort Worth, Texas, to accompany a news story.
Date: October 29, 1993, 5:00 p.m.
Creator: KXAS-TV (Television station : Fort Worth, Tex.)
Object Type: Video
System: The UNT Digital Library

Oral History Interview with William W. Creacy, October 9, 1993

Access: Use of this item is restricted to the UNT Community
Interview with William Creacy concerning his experiences before, during and after his employment in the Civilian Conservation Corps during the Great Depression. Creacy worked at camps in Elephant Butte, Arizona (Company 855); Tucson, Arizona; Grand Lake, Colorado; and Yuma, Arizona.
Date: October 9, 1993
Creator: Henley, Shelly & Creacy, William W.
Object Type: Text
System: The UNT Digital Library

Oral History Interview with Garfield Thompson, October 11, 1993

Access: Use of this item is restricted to the UNT Community
Interview with Garfield Thompson, a member of the Civilian Conservation Corps from Fort Worth, Texas. Thompson discusses his family background and education, the effects of the Great Depression, Republicans, the New Deal, joining the CCC and assignment to Company 812 in Cache, Oklahoma, the layout of the camp, projects worked, routine, recreation and leave, discharge, and reflections on the program.
Date: October 11, 1993
Creator: Calame, Michelle & Thompson, Garfield
Object Type: Book
System: The UNT Digital Library