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TitleDateSubjectDescription
1 2014-2015 General Catalog2014University of Utah catalogue; (Catalog)Course descriptions, majors & minors, colleges & schools
2 2015-2016 General Catalog2015University of Utah catalogue; (Catalog)Course descriptions, majors & minors, colleges & schools
3 2016-2017 General Catalog2016University of Utah catalogue; (Catalog)Course descriptions, majors & minors, colleges & schools
4 2017-2018 General Catalog2017University of Utah catalogue; (Catalog)Course descriptions, majors & minors, colleges & schools
5 2018-2019 General Catalog2018University of Utah catalogue; (Catalog)Course descriptions, majors & minors, colleges & schools
6 2019-2020 General Catalog2019University of Utah catalogue; (Catalog)Course descriptions, majors & minors, colleges & schools
7 Catalytic and thermal effects in the upgrading of bitumen-derived heavy oils (Abstract only)1985Heavy oils derived from PR Spring bitumen were hydrotreated in the fixed bed reactor as a function of process variables. The presulfided commercial NiMo/y-alumina (HDN) catalyst, Mo supported on y-alumina (HDM) catalyst and sodium-impregnated HDN catalyst support were used in this study to investiga...
8 Catalytic upgrading of Asphalt Ridge bitumen over hydrodenitrogenation catalysts (Abstract only)1997The bitumen extracted from Asphalt Ridge oil sands was hydrotreated over three sulfided NiMo/y-Alumina hydrodenitrogenation catalysts in a fixed bed reactor to study the extent of upgrading as a function of process variables and catalyst. The process variables investigated were temperature (619-685 ...
9 Fluidization of coked sands and pyrolysis of oil sands in a fluidized bed reactor (Abstract only)1995-12fluidization of coked sands; pyrolysis of oil sands; fluidized bed reactor; coked sands; oil sandsA 7.62 cm diameter fluidized bed oil sands pyrolysis system was designed, installed, and operated. The studies conducted with this system included coked sands and oil sands feeding using a bin discharge auger feeder, the withdrawal of solids from a fluidized bed using a modified Lvalve, fluidization...
10 Homogenizer/subsampler for tar sand process streams
11 How Shell attempted to unlock Utah tar sands
12 Hydraulic mining of tar sand bitumen with aggregate material
13 Hydraulic mining technique for recovering bitumen from tar sand deposit
14 Hydrocarbon-induced cancer risks in oil shale processing
15 Hydrotreating the Whiterocks oil sand bitumen and bitumen-derived liquid (Abstract only)1992-12hydrotreating; Whiterocks oil; oil sand; bitumen; bitumen-derived liquid; bitumen conversion; heteroatom reduction; heteroatomConversion of Utah's Uinta Basin bitumens to liquid fuels requires molecular weight reduction of the parent material as well as removal of heteroatoms. Heteroatom reduction of bitumen obtained through solvent extraction of Whiterocks oil sand was investigated. A comparison of the relative processabi...
16 Photograph of the University of Utah Genetics LaboratoryUniversity of Utah; Department of Genetics; HistoryPhotograph of one of the earliest locations of the University of Utah Genetics Laboratory. The creation of the Department of Genetics was approved by the Board of Regents in August, 1944. The building itself is probably World War II surplus.
17 Photograph of the University of Utah Genetics LaboratoryUniversity of Utah; Department of Genetics; HistoryPhotograph of one of the earliest locations of the University of Utah Genetics Laboratory. The creation of the Department of Genetics was approved by the Board of Regents in August, 1944. The building itself is probably World War II surplus.
18 Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 1 Depth: 20.0 - 30.0 ft.2015-07core samples; Skyline 16; box 1; Green River FormationCore sample photograph by the Utah Geological Survey, University of Utah. Skyline 16, SW SW sec. 10 11S 25E Uintah Country, Utah. Box 1 Depth: 20.0 - 30.0 ft.
19 Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 10 Depth: 110.0 - 120.0 ft.2015-07core samples; Skyline 16; box 10; Green River FormationCore sample photograph by the Utah Geological Survey, University of Utah. Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 10 Depth: 110.0 - 120.0 ft.
20 Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 11 Depth: 120.0 - 130.0 ft.2015-07core samples; Skyline 16; box 11; Green River FormationCore sample photograph by the Utah Geological Survey, University of Utah. Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 11 Depth: 120.0 - 130.0 ft.
21 Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 12 Depth: 130.0 - 140.0 ft.2015-07core samples; Skyline 16; box 12; Green River FormationCore sample photograph by the Utah Geological Survey, University of Utah. Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 12 Depth: 130.0 - 140.0 ft.
22 Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 13 Depth: 140.0 - 150.0 ft.2015-07core samples; Skyline 16; box 13; Green River FormationCore sample photograph by the Utah Geological Survey, University of Utah. Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 13 Depth: 140.0 - 150.0 ft.
23 Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 14 Depth: 150.0 - 160.0 ft.2015-07core samples; Skyline 16; box 14; Green River FormationCore sample photograph by the Utah Geological Survey, University of Utah. Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 14 Depth: 150.0 - 160.0 ft.
24 Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 15 Depth: 160.0 - 170.0 ft.2015-07core samples; Skyline 16; box 15; Green River FormationCore sample photograph by the Utah Geological Survey, University of Utah. Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 15 Depth: 160.0 - 170.0 ft.
25 Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 16 Depth: 170.0 - 180.0 ft.2015-07core samples; Skyline 16; box 16; Green River FormationCore sample photograph by the Utah Geological Survey, University of Utah. Skyline 16: SW SW sec. 10 11S 25E Uintah County, Utah. Box 16 Depth: 170.0 - 180.0 ft.
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