Search results for "Uranium"

showing 10 items of 260 documents

First principles modelling of oxygen impurities in UN nuclear fuels

2008

We report results of first principles VASP supercell calculations of O impurity in UN fuels placed either at an interstitial tetrahedral position or as a substitution for a host N ion. In the latter case O perfectly fits into N site producing no lattice distortion. Such the O substitutional impurity only slightly affects the formation energies of U and N vacancies nearby. In both interstitial and substitutional positions O atom attracts the additional electron density and transforms into the negatively charged ion. Oxygen incorporation into pre-existing N vacancy is energetically more favourable than into the interstitial position. The O impurities produce an additional peak at the low ener…

Nuclear and High Energy PhysicsElectron densityChemistrychemistry.chemical_elementUraniumOxygenIonNuclear Energy and EngineeringImpurityVacancy defectPhysical chemistryGeneral Materials ScienceAtomic physicsIsostructuralSpectroscopyJournal of Nuclear Materials
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In-beam spectroscopy using the JYFL gas-filled magnetic recoil separator RITU

2003

The techniques of recoil-gating and recoil-decay tagging have been employed at Jyvaskyla to perform in-beam γ-ray and electron spectroscopy studies of heavy nuclei. The JUROSPHERE γ-ray array and the SACRED electron spectrometer have been placed at the target position of the JYFL gas-filled recoil separator recoil ion transport unit (RITU). The RITU separator has been used to collect the recoils of interest and separate them from beam particles and fission products. At the focal plane a detector system consisting of time-of-flight and implantation detectors has been used for further event identification. The method and some highlights from the results in the lead region close to the proton …

Nuclear and High Energy PhysicsFission productsElectron spectrometerPhysics::Instrumentation and Detectors010308 nuclear & particles physicsChemistryDetector01 natural sciencesElectron spectroscopyNuclear physicsRecoil0103 physical sciencesNuclear Experiment010306 general physicsSpectroscopyInstrumentationTransuranium elementSeparator (electricity)Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Ion beam analysis and alpha spectrometry of sources electrodeposited on several backings

1998

Abstract Alpha sources of several activities were prepared by electrodeposition of natural uranium onto four different backings: stainless steel, Ni, Mo and Ti. The influence of the activity, the type of backing, and the process of heating the source on the energy resolution of the spectra were investigated using alpha spectrometry and Rutherford Backscattering Spectrometry (RBS) techniques. Diffusion profiles of the radioactive deposits in the backings were obtained from RBS and related to the results using alpha spectrometry

Nuclear and High Energy PhysicsIon beam analysisMaterials scienceAlpha spectrometryResolution (mass spectrometry)Radiochemistrytechnology industry and agricultureAnalytical chemistryNatural uraniumRutherford backscattering spectrometryInstrumentation
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Reactions of40Ar with233U,235U, and238U at the barrier

1990

Production cross sections for target-like transfer products in reactions of40Ar with233,235,238U at the barrier were determined using radiochemical techniques. The heaviest products detected are isotopes of californium (Z=98). In addition to the quasi-elastic component of the isotopic distributions observed in the vicinity of uranium, there are also relaxed contributions throughout the entire region. The peak positions of the isotope distributions of this component for fixed atomic number, after the transfer of > 3 charges, approach closely the minimum of the potential energy surfaces (PES). The experimental results thus indicate the cold formation of the reaction products. A search for lon…

Nuclear and High Energy PhysicsIsotopeComponent (thermodynamics)ChemistryAnalytical chemistryNuclear fusionchemistry.chemical_elementAtomic numberIsotopes of californiumActinideAtomic physicsUraniumPotential energyZeitschrift f�r Physik A Atomic Nuclei
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The ion-guide isotope separator on-line at the Tohoku University Cyclotron

1987

Abstract The status of the ion-guide isotope separator on-line at the Tohoku University Cyclotron is reported. The optimum ion-guide parameters were determined from test experiments using atomic and molecular ions ionized with an electric discharge inside the target chamber as well as using 64 Ga(T 1 2 = 2.6 m ) ions produced by the 64Zn(p, n) reaction. Using the present system together with a ΔE−E plastic counter telescope and a germanium detector we identified 16 short-lived nuclei including the first mass-separated nuclei 57Cu and 45V. The efficiency of mass separation for 64Ga was ϵ ∼ 1%, where ϵ is defined as the number of atoms collected at the end of the separator divided by that rec…

Nuclear and High Energy PhysicsIsotopeCyclotronAnalytical chemistrychemistry.chemical_elementUraniumIonlaw.inventionSemiconductor detectorNuclear physicschemistrylawNuclear fissionIonizationElectric dischargeInstrumentationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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First spatial isotopic separation of relativistic uranium projectile fragments

1994

Abstract Spatial isotopic separation of relativistic uranium projectile fragments has been achieved for the first time. The fragments were produced in peripheral nuclear collisions and spatially separated in-flight with the fragment separator FRS at GSI. A two-fold magnetic-rigidity analysis was applied exploiting the atomic energy loss in specially shaped matter placed in the dispersive central focal plane. Systematic investigations with relativistic projectiles ranging from oxygen up to uranium demonstrate that the FRS is a universal and powerful facility for the production and in-flight separation of monoisotopic, exotic secondary beams of all elements up to Z = 92. This achievement has …

Nuclear and High Energy PhysicsTheoryofComputation_COMPUTATIONBYABSTRACTDEVICES010308 nuclear & particles physicsChemistryProjectileNuclear TheoryTheoryofComputation_GENERALSeparator (oil production)chemistry.chemical_element[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]UraniumAccelerators and Storage RingsComputingMethodologies_ARTIFICIALINTELLIGENCE01 natural sciencesNuclear physicsComputingMethodologies_PATTERNRECOGNITIONCardinal point0103 physical sciencesMonoisotopic massAtomic physicsNuclear Experiment010306 general physicsInstrumentationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Direct synthesis of pure brannerite UTi2O6

2019

International audience; A new method based on the precipitation of uranium(IV) and titanium(IV) hydroxide precursors was developed to prepare pure brannerite UTi2O6 samples. In fact, U(IV) dissolved in HCl (6 mol L−1) was mixed to Ti (IV) alkoxyde before a basification step with an excess of NH4OH to obtain a highly reactive nanometric (U,Ti)(OH)4 powder. The obtained powder was then dried under vacuum, pressed into pellets and finally fired at 1300 °C. This method led to the formation of pure brannerite in contrast to previous reported protocols, which showed the formation of impurities such us UO2 and TiO2. The refined unit cell parameters of UTi2O6 led to a = 9.8113(2) Å, b = 3.7681(1) Å…

Nuclear and High Energy PhysicsUranium titanateMaterials scienceuranium hydroxide Corresponding authorUranium dioxide[SDU.STU.PE]Sciences of the Universe [physics]/Earth Sciences/Petrographychemistry.chemical_element02 engineering and technology01 natural sciencesUranium hydroxide010305 fluids & plasmaschemistry.chemical_compoundImpurity0103 physical sciencesBrannerite[CHIM]Chemical SciencesGeneral Materials ScienceOxide mineralsPrecipitation (chemistry)Uranium021001 nanoscience & nanotechnologyNuclear Energy and EngineeringchemistryX-ray crystallographyHydroxide0210 nano-technologyTitaniumNuclear chemistry
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Delayed-neutrons from arsenic isotopes 84As, 85As and 86As

1973

Abstract Short-lived arsenic isotopes were produced by thermal-neutron fission of 235U and isolated within 2·5 sec by volatilization of arsenic hydride. The existence of a strong delayed-neutron precursor of 2·05±0·05 sec half-life among the arsenic isotopes is confirmed and its assignment to 85As ascertained by milking of the daughter product 33 sec 85Se and 3·1 min 84Se, which is the final nucleus in the neutron decay branch of 85As. A delayed-neutron yield of 7·8 ± 1·2 neutrons/104 fissions was obtained for 85As. A new isotope, 0·9 ± 0·2 sec 86As, was detected by delayed-neutron counting and by following the decay of its most prominent γ-ray. The mass assignment was verified by milking o…

Nuclear fission productCluster decayPolymers and PlasticsIsotopeIsotopes of uraniumChemistryNeutron emissionIsotopes of samariumRadiochemistryMaterials ChemistryFission product yieldDelayed neutronJournal of Inorganic and Nuclear Chemistry
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The utmost ends of the nuclear fuel cycle: Finnish perceptions of the risks of uranium mining and nuclear waste management

2013

There has been substantial social scientific research to determine how people perceive the risks of nuclear power, wastes, and waste management, but not much attention has been given to risk perceptions of other types of nuclear activities. Knowledge about attitudes towards uranium mining and exploitation is increasing, and more attention should be paid to how people perceive the risks of both ends of the nuclear fuel cycle. Therefore, the aim of this paper is to analyze the risk perceptions towards nuclear waste and uranium mining and how these perceptions relate to each other. The analysis is based on Finnish survey data (N = 1180) gathered in 2007. Renewed international interest in nucle…

Nuclear fuel cycleNatural resource economicsbusiness.industryStrategy and Managementmedia_common.quotation_subjectGeneral EngineeringGeneral Social SciencesRadioactive wastechemistry.chemical_elementNuclear powerUraniumRisk perceptionchemistryMoral obligationPerceptionta5141Survey data collectionBusinessSafety Risk Reliability and Qualitymedia_commonJournal of Risk Research
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Cover Picture: Uranium from German Nuclear Power Projects of the 1940s— A Nuclear Forensic Investigation (Angew. Chem. Int. Ed. 45/2015)

2015

Nuclear physicsEngineeringchemistrybusiness.industryNuclear forensicschemistry.chemical_elementCover (algebra)General ChemistryNuclear powerUraniumbusinessCatalysisNuclear chemistryAngewandte Chemie International Edition
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