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TitleDateSubjectDescription
76 UUSAC project 1997-19981998Funding; University of Utah campus projectsUniversity of Utah campus projects sponsored by UUSAC
77 California plio-miocene oils: Evidence of early generation1987plio-miocene oils; California oil; source rocks; commercial generation; LOM; hydrocarbon concentration; oil qualityEarly generation of oil from Monterey and equivalent source rocks may well be the primary controlling factor on oil quality in the coastal basins of California. Commercial generation has occurred at reflectance levels as low as 0.3% R0. The wide range of chemical characteristics of these oils is com...
78 On-line, mass spectrometric determination of ammonia from oil shale pyrolysis using isobutane chemical ionization1988-03Ammonia is the predominant nitrogen-containing species formed during the pyrolysis of oil shale. An on-line method of determining ammonia was developed to study kinetics and chemistry of formation and evolution. While fragmentation of water interferes with electron ionization mass spectrometry, chem...
79 UUSAC president's staff awards 1993-19941994University of Utah staff awardsNotes, articles and memos on University of Utah presidential staff awards.
80 Attachment 2 - Statement of program objectives clean and secure energy from domestic oil shale and oil sands resources2011-12ICSE; Oil shale research; Energy; Oil sands resources; Domestic oil shale; Environmental impact; Basin scale simulation; Liquid fuel production; In-situ thermal processing; Environmental; Legal; Policy issues; University of UtahThis Statement of Project Objectives (SOPO) reflects the performance period from October 1, 2010 through September 30, 2013. It includes tasks/subtasks funded in fiscal year 2009 (Phase 1) and tasks/subtasks funded in fiscal year 2010 (Phase II). Tasks/subtasks initiated during Phase I that are anti...
81 Assay products from Green River oil shale1986-02-18Pyrolysis stoichiometry; Green River; Oil shale; Oil; Mahogany zone; Colorado; Utah; Pairwise correlation coefficients; Pyrolysis; Elemental analyses of shales and oils; Organic carbon; Gas composition; Elemental composition; Oil shale grade; Raw shaleData from 66 material-balanced assays conducted at Lawrence Livermore National Laboratory, Laramie Energy Technology Center, and The Oil shale Corporation were compiled and analyzed to determine the pyrolysis stoichiometry for Green River formation oil shales originating in and near the Mahogany zon...
82 Phase 2: Clean and secure energy from coal: Quarterly progress report: October 1, 2010 to December 31, 20102011-01-31domestic coal resources; CO2 capture; stationary power generation; LES; DQMOM approach; oxy-coal flames; coalThe University of Utah is pursuing research to utilize the vast energy stored in our domestic coal resources and to do so in a manner that will capture CO2 from combustion from stationary power generation. The research is organized around the theme of validation and uncertainty quantification throug...
83 APPENDIX E - Integrated treatment of produced water by chemical and biological unit operations, A subpart of project - Quantifying water availability impacts and protecting water quality while developing Utah oil shale and sands - Final Project Report - Reporting period: June 21st, 2006 to October 21st, 20092010-10-07Water treatment; Water quality - Utah; Oil shale and sandsWater generated along with oil, gas, and coal bed methane production is commonly known as produced water, formation water, or oilfield brine [1]. Produced water represents the largest waste stream volume in production operations on most offshore platforms [2]. According to the American Petroleum Ins...
84 Clean and secure energy from domestic oil shale and oil sands resources: Quarterly progress report: April 2012 to June 20122012-07ICSE; University of Utah; AMSO; American Shale Oil; Strategic Alliance Reserve; SAR; Utah Division of Oil, Gas, and Mining; DOGM; Large eddy simulation; LES; International Flame Research Foundation; IFRF; Flamelet; Pyrolysis; Kerogen; Thermogravimetric analysis; TGA; CO2 enhanced oil recovery; EOR; ...The Clean and Secure Energy from Domestic Oil Shale and Oil Sands Resources program is part of the research agenda of the Institute for Clean and Secure Energy (ICSE) at the University of Utah. In this quarter, ICSE presented the 2012 University of Utah Unconventional Fuels Conference and met with r...
85 University of Utah Staff Advisory Committee (UUSAC) 1996-19971997Year end report; University of Utah staff; University of Utah employeesYear end report of UUSAC activities, membership and other committee work.
86 UUSAC correspondence 1993-19941994LettersLetters and memos written by and to Bonnie McMorris concerning UUSAC business.
87 Biomakers in oil shale: Occurrence and applications1982-10Biological markers, compounds derived essentially unchanged from living organisms, are found in oil-bearing rocks, petroleum and most ancient sediments. We are investigating the variation in ratios of certain biomarkers in shale oils and their use as tracers for relating oil to source rock during in...
88 Computational study of the anode baking industrial furnaceTurbulent flow; Eddy dissipation model; Combustion, NOx; Zeldovich mechanismIn the aluminium industry, the Hall-Héroult process is used for smelting of aluminium using carbon electrodes such as anodes. The baking process of anodes is required for their maximum efficiency during this electrolysis process. The anode baking process contributes up to 15% costs in the aluminium...
89 1950-51 General Catalog1950University of Utah catalogue; (Catalog)Bulletin of the University of Utah, Volume 40, June, 1950, No. 12. Catalogue of the University of Utah. 1850-1950 Centennial. Announcement for 1950-51.
90 Gasification studies: Task 4 topical report, Utah Clean Coal Program2014-02-06ICSE; Gasification; Large-eddy simulation; One-dimensional turbulence: Radiation; Soot formation; Entrained-flow coal gasification; Gasification kinetics; Slag formationA key objective of the Task 4 activities has been to develop simulation tools to support development, troubleshooting and optimization of pressurized entrained-flow coal gasifiers. The overall gasifier models (Subtask 4.1) combine submodels for fluid flow (Subtask 4.2) and heat transfer (Subtask 4.3...
91 Fischer Assay Data, Utah Geological Survey Well Number U0262008This dataset contains the results of Fischer assay analyses obtained and published by the Utah Geological Survey for well U026.
92 In situ instrumentation: Final report of a joint EE/ME group study1974-10-25in situ instrumentation; EE/ME; fossil fuel; geothermal resources; in situ processing; oil shale; coal deposits; geothermal resources; measurements for energy process; instrumentation; instrumentation development; development costsGreater utilization of our fossil fuel and geothermal resources is vital to our future national economic well-being. However, the economic utilization of oil shale, some coal deposits and geothermal resources may depend on in situ processing. In turn, the optimal development of in situ coal gasifica...
93 Oxidized oil shale for removal of nitrogen oxides in combustion gas streams1993-01-15oxidized oil shale; hot recycled solids; HRS; oil shale retorting; removing nitrogen oxidesOxidized oil shale from the combustor in the LLNL Hot-Recycled-Solids (HRS) oil shale retorting process has been found to be catalyst for removing nitrogen oxides from laboratory gas streams using NH3 as a reductant. Oxidized Green River oil shale heated at 10°C/min in an Ar/02/NO/NH3 mixture (~ 93...
94 Fischer Assay Data, Utah Geological Survey Well Number U0272008This dataset contains the results of Fischer assay analyses obtained and published by the Utah Geological Survey for well U027.
95 Appendix 1: User guide for characterizing particulate matter2003-09Air quality; Particulate matter; PM; Characterizing particulate matter; Sampling PM; PM background; Photoacoustic analyzer; PA; Photoelectric Aerosol Sensor; PAS; PAH; Aerosol time-of-flight mass spectrometer; ATOFMS; Dilution and Sampling; Soil; Dust; Smoke; Liquid droplets; Atmosphere; Nitrate; Su...This User's Guide is intended to assist environmental or military personnel who work with air quality measurements, regulations, and planning for the Department of Defense. Specifically, it focuses on an evaluation of three newly developed instruments for characterizing particulate matter (PM), gene...
96 Clean coal program research activities: Final report: Reporting period 07/01/2006-05/31/20092010-05Environment; Emissions; NOx; SOx; Mercury emission; CO2 emissions; Utah Clean Coal Program; Carbon capture and sequestration; CCS; Green field plants; Simulation; Mergury control; Oxycoal combustion; Gasification; Sequestration; Chemical looping combustion; CLC; Materials investigations; NETL; Coal ...Although remarkable progress has been made in developing technologies for the clean and efficient utilization of coal, the biggest challenge in the utilization of coal is still the protection of the environment. Specifically, electric utilities face increasingly stringent restriction on the emission...
97 Environmental, health, safety, and socioeconomic impacts associated with oil recovery from tar-sand deposits in the United States1981-09-12tar sand; tar sand resources; oil recovery; petroleum extractionThe tar-sand resources of the United States have the potential to yield as much as 36 billion barrels (bbls) of oil. The tar-sand petroleum-extraction technologies now being considered for commercialization in the United States include both surface (above-ground) systems and in situ (underground) pr...
98 UUSAC salary, wage and benefits 1993-19941994Salary; University of Utah employeesUniversity of Utah salary and wages information for campus employees for 1993-1994.
99 Procedure for using the matrix inversion routinethe spint modity programs allow the used to modity a spint matrix. It also, copies information at the beginning and end of a life which allows it to process impact files, etc.
100 1956-57 General Catalog1956University of Utah catalogue; (Catalog)Bulletin of the University of Utah, Volume 47, June, 1956, No. 5. Catalogue of the University of Utah. Announcement for 1956-57.
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