Novel Heavy Quark Phenomena in QCD (open access)

Novel Heavy Quark Phenomena in QCD

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Date: January 29, 2014
Creator: Brodsky, Stanley J.
Object Type: Article
System: The UNT Digital Library
Novel QCD Phenomena and New Perspectives for Hadron Physics (open access)

Novel QCD Phenomena and New Perspectives for Hadron Physics

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Date: February 4, 2014
Creator: Brodsky, Stanley J.
Object Type: Article
System: The UNT Digital Library
Electron g-2 in Light-Front Quantization (open access)

Electron g-2 in Light-Front Quantization

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Date: February 24, 2014
Creator: Zhao, Xingbo; Honkanen, Heli; Maris, Pieter; Vary, James P. & Brodsky, Stanley J.
Object Type: Article
System: The UNT Digital Library
Final Report for Phase II Study: Prototyping the Sketch Planning Visualization Tool for Non-Motorized Travel (open access)

Final Report for Phase II Study: Prototyping the Sketch Planning Visualization Tool for Non-Motorized Travel

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Date: February 1, 2014
Creator: Hwang, Ho-Ling; Wilson, Daniel W; Reuscher, Tim; Chin, Shih-Miao & Taylor, Rob D
Object Type: Report
System: The UNT Digital Library
Sol-Gel Based Polybenzimidazole Membranes for Hydrogen Pumping Devices (open access)

Sol-Gel Based Polybenzimidazole Membranes for Hydrogen Pumping Devices

Electrochemical hydrogen pumping using a high temperature (>100°C) PBI membrane was demonstrated under non-humidified and humidified conditions at ambient pressures. Relatively low voltages were required to operate the pump over a wide range of hydrogen flow rates. The advantages of the high temperature capability were shown by operating the pump on reformate feed gas mixtures containing various amounts of CO and CO{sub 2}. Gas purity measurements on the cathode gas product were conducted and significant reductions in gas impurities were detected. The applicability of the PBI membrane for electrochemical hydrogen pumping and its durability under typical operating conditions was established with tests that lasted for nearly 4000 hours.
Date: February 26, 2014
Creator: Benicewicz, Brian
Object Type: Report
System: The UNT Digital Library
Establishing MICHCARB, a geological carbon sequestration research and education center for Michigan, implemented through the Michigan Geological Repository for Research and Education, part of the Department of Geosciences at Western Michigan University (open access)

Establishing MICHCARB, a geological carbon sequestration research and education center for Michigan, implemented through the Michigan Geological Repository for Research and Education, part of the Department of Geosciences at Western Michigan University

The Michigan Geological Repository for Research and Education (MGRRE), part of the Department of Geosciences at Western Michigan University (WMU) at Kalamazoo, Michigan, established MichCarb—a geological carbon sequestration resource center by: • Archiving and maintaining a current reference collection of carbon sequestration published literature • Developing statewide and site-specific digital research databases for Michigan’s deep geological formations relevant to CO2 storage, containment and potential for enhanced oil recovery • Producing maps and tables of physical properties as components of these databases • Compiling all information into a digital atlas • Conducting geologic and fluid flow modeling to address specific predictive uses of CO2 storage and enhanced oil recovery, including compiling data for geological and fluid flow models, formulating models, integrating data, and running the models; applying models to specific predictive uses of CO2 storage and enhanced oil recovery • Conducting technical research on CO2 sequestration and enhanced oil recovery through basic and applied research of characterizing Michigan oil and gas and saline reservoirs for CO2 storage potential volume, injectivity and containment. Based on our research, we have concluded that the Michigan Basin has excellent saline aquifer (residual entrapment) and CO2/Enhanced oil recovery related (CO2/EOR; buoyant entrapment) geological carbon sequestration potential …
Date: January 28, 2014
Creator: Barnes, David A. & Harrison, William B.
Object Type: Report
System: The UNT Digital Library
Locally Enhanced Conductivity due to the Tetragonal Domain Structure in LaAlO3/SrTiO3 Heterointerfaces (open access)

Locally Enhanced Conductivity due to the Tetragonal Domain Structure in LaAlO3/SrTiO3 Heterointerfaces

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Date: March 13, 2014
Creator: Kalisky, Beena; Spanton, Eric M.; Noad, Hilary; Kirtley, John R.; Nowack, Katja C.; Bell, Christopher et al.
Object Type: Article
System: The UNT Digital Library
Cast Stone Formulation At Higher Sodium Concentrations (open access)

Cast Stone Formulation At Higher Sodium Concentrations

A low temperature waste form known as Cast Stone is being considered to provide supplemental Low Activity Waste (LAW) immobilization capacity for the Hanford site. Formulation of Cast Stone at high sodium concentrations is of interest since a significant reduction in the necessary volume of Cast Stone and subsequent disposal costs could be achieved if an acceptable waste form can be produced with a high sodium molarity salt solution combined with a high water to premix (or dry blend) ratio. The objectives of this study were to evaluate the factors involved with increasing the sodium concentration in Cast Stone, including production and performance properties and the retention and release of specific components of interest. Three factors were identified for the experimental matrix: the concentration of sodium in the simulated salt solution, the water to premix ratio, and the blast furnace slag portion of the premix. The salt solution simulants used in this study were formulated to represent the overall average waste composition. The cement, blast furnace slag, and fly ash were sourced from a supplier in the Hanford area in order to be representative. The test mixes were prepared in the laboratory and fresh properties were measured. Fresh density increased …
Date: February 28, 2014
Creator: Fox, K. M.; Roberts, K. A. & Edwards, T. B.
Object Type: Report
System: The UNT Digital Library
A Multi-TeV Linear Collider Based on CLIC Technology : CLIC Conceptual Design Report (open access)

A Multi-TeV Linear Collider Based on CLIC Technology : CLIC Conceptual Design Report

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Date: February 13, 2014
Creator: Aicheler, M; Burrows, P.; Draper, M.; Garvey, T.; Lebrun, P.; Peach, K. et al.
Object Type: Report
System: The UNT Digital Library