2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Index

Index map for Mineral Wells Census County Division, Texas showing the distribution of census blocks and smaller inset areas for which the U.S. Census Bureau collected data. The plotted map scale is 1:50,526.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 6

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 13

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 10

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 3

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 8

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 1

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 7

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 11

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 9

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 5

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 12

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 2

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Block 4

Parent map for Mineral Wells Census County Division, Texas showing the area of one geographic block for which the U.S. Census Bureau collected data. The plotted map scale is 1:10,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Inset B01

Inset map for Mineral Wells Census County Division, Texas showing detail within a census block for which the U.S. Census Bureau collected data. The plotted map scale is 1:2,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Inset A01

Inset map for Mineral Wells Census County Division, Texas showing detail within a census block for which the U.S. Census Bureau collected data. The plotted map scale is 1:4,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History

2000 Census County Subdivison Block Map: Mineral Wells CCD, Texas, Inset C01

Inset map for Mineral Wells Census County Division, Texas showing detail within a census block for which the U.S. Census Bureau collected data. The plotted map scale is 1:2,000.
Date: 2000
Creator: United States. Bureau of the Census.
Object Type: Map
System: The Portal to Texas History
Cultural Resources Survey for Burlington Resources Oil and Gas Company's Well #1H Fort Wolters, Lake Mineral Wells State Park, Parker County, Texas (open access)

Cultural Resources Survey for Burlington Resources Oil and Gas Company's Well #1H Fort Wolters, Lake Mineral Wells State Park, Parker County, Texas

Survey results of proposed pipeline route through Lake Mineral Wells State Park in Parker County, Texas.
Date: 2006
Creator: AR Consultants
Object Type: Report
System: The Portal to Texas History
Mineral transformation and biomass accumulation associated with uranium bioremediation at Rifle, Colorado (open access)

Mineral transformation and biomass accumulation associated with uranium bioremediation at Rifle, Colorado

Injection of organic carbon into the subsurface as an electron donor for bioremediation of redox-sensitive contaminants like uranium often leads to mineral transformation and biomass accumulation, both of which can alter the flow field and potentially bioremediation efficacy. This work combines reactive transport modeling with a column experiment and field measurements to understand the biogeochemical processes and to quantify the biomass and mineral transformation/accumulation during a bioremediation experiment at a uranium contaminated site near Rifle, Colorado. We use the reactive transport model CrunchFlow to explicitly simulate microbial community dynamics of iron and sulfate reducers, and their impacts on reaction rates. The column experiment shows clear evidence of mineral precipitation, primarily in the form of calcite and iron monosulfide. At the field scale, reactive transport simulations suggest that the biogeochemical reactions occur mostly close to the injection wells where acetate concentrations are highest, with mineral precipitate and biomass accumulation reaching as high as 1.5% of the pore space. This work shows that reactive transport modeling coupled with field data can be an effective tool for quantitative estimation of mineral transformation and biomass accumulation, thus improving the design of bioremediation strategies.
Date: April 20, 2009
Creator: Li, L.; Steefel, C. I.; Williams, K. H.; Wilkins, M. J. & Hubbard, S. S.
Object Type: Article
System: The UNT Digital Library
An Investigation for Disposal of Drill Cuttings into Unconsolidated Sandstones and Clayey Sands (open access)

An Investigation for Disposal of Drill Cuttings into Unconsolidated Sandstones and Clayey Sands

This project include experimental data and a set of models for relating elastic moduli/porosity/texture and static-to-dynamic moduli to strength and failure relationships for unconsolidated sands and clayey sands. The results of the project should provide the industry with a basis for wider use of oil base drilling fluids in water sensitive formations by implementing drill cutting injection into existing wells at abandoned formations and controlling fracture geometry to prevent ground water contamination.
Date: September 11, 2000
Creator: Mese, Ali; Dvorkin, Jack & Shillinglaw, John
Object Type: Report
System: The UNT Digital Library
Beneficial Use of Drilling Waste - A Wetland Restoration Technology (open access)

Beneficial Use of Drilling Waste - A Wetland Restoration Technology

This project demonstrated that treated drill cuttings derived from oil and gas operations could be used as source material for rebuilding eroding wetlands in Louisiana. Planning to supply a restoration site, drill a source well, and provide part of the funding. Scientists from southeastern Louisiana University's (SLU) Wetland Biology Department were contracted to conduct the proposed field research and to perform mesocosm studies on the SLU campus. Plans were to use and abandoned open water drill slip as a restoration site. Dredged material was to be used to create berms to form an isolated cell that would then be filled with a blend of dredged material and drill cuttings. Three elevations were used to test the substrates ability to support various alternative types of marsh vegetation, i.e., submergent, emergent, and upland. The drill cuttings were not raw cuttings, but were treated by either a dewatering process (performed by Cameron, Inc.) or by a stabilization process to encapsulate undesirable constituents (performed by SWACO, Division of Smith International).
Date: August 14, 2000
Creator: Pioneer Natural Resources
Object Type: Report
System: The UNT Digital Library
New Geophysical Technique for Mineral Exploration and Mineral Discrimination Based on Electromagnetic Methods (open access)

New Geophysical Technique for Mineral Exploration and Mineral Discrimination Based on Electromagnetic Methods

The research during the first year of the project was focused on developing the foundations of a new geophysical technique for mineral exploration and mineral discrimination, based on electromagnetic (EM) methods. The proposed new technique is based on examining the spectral induced polarization effects in electromagnetic data using modern distributed acquisition systems and advanced methods of 3-D inversion. The analysis of IP phenomena is usually based on models with frequency dependent complex conductivity distribution. One of the most popular is the Cole-Cole relaxation model. In this progress report we have constructed and analyzed a different physical and mathematical model of the IP effect based on the effective-medium theory. We have developed a rigorous mathematical model of multi-phase conductive media, which can provide a quantitative tool for evaluation of the type of mineralization, using the conductivity relaxation model parameters. The parameters of the new conductivity relaxation model can be used for discrimination of the different types of rock formations, which is an important goal in mineral exploration. The solution of this problem requires development of an effective numerical method for EM forward modeling in 3-D inhomogeneous media. During the first year of the project we have developed a prototype 3-D IP …
Date: March 9, 2005
Creator: Zhdanov, Michael S.
Object Type: Report
System: The UNT Digital Library
Numerical modeling of injection and mineral trapping of CO2 withH2S and SO2 in a Sandstone Formation (open access)

Numerical modeling of injection and mineral trapping of CO2 withH2S and SO2 in a Sandstone Formation

Carbon dioxide (CO{sub 2}) injection into deep geologic formations could decrease the atmospheric accumulation of this gas from anthropogenic sources. Furthermore, by co-injecting H{sub 2}S or SO{sub 2}, the products respectively of coal gasification or combustion, with captured CO{sub 2}, problems associated with surface disposal would be mitigated. We developed models that simulate the co-injection of H{sub 2}S or SO{sub 2} with CO{sub 2} into an arkose formation at a depth of about 2 km and 75 C. The hydrogeology and mineralogy of the injected formation are typical of those encountered in Gulf Coast aquifers of the United States. Six numerical simulations of a simplified 1-D radial region surrounding the injection well were performed. The injection of CO{sub 2} alone or co-injection with SO{sub 2} or H{sub 2}S results in a concentrically zoned distribution of secondary minerals surrounding a leached and acidified region adjacent to the injection well. Co-injection of SO{sub 2} with CO{sub 2} results in a larger and more strongly acidified zone, and alteration differs substantially from that caused by the co-injection of H{sub 2}S or injection of CO{sub 2} alone. Precipitation of carbonates occurs within a higher pH (pH > 5) peripheral zone. Significant quantities of CO{sub …
Date: September 7, 2004
Creator: Xu, Tianfu; Apps, John A.; Pruess, Karsten & Yamamoto, Hajime
Object Type: Article
System: The UNT Digital Library
Development of Improved Oil Field Waste Injection Disposal Techniques (open access)

Development of Improved Oil Field Waste Injection Disposal Techniques

The goals of this DOE sponsored project are to: (1) assemble and analyze a comprehensive database of past waste injection operations; (2) develop improved diagnostic techniques for monitoring fracture growth and formation changes; (3) develop operating guidelines to optimize daily operations and ultimate storage capacity of the target formation; and (4) to test these improved models and guidelines in the field.
Date: December 17, 2001
Creator: Inc., Terralog Technologies USA
Object Type: Report
System: The UNT Digital Library