Thermal conductivities of ordinary and deuterated gaseous hydrogen fluoride and their equimolar mixture
Thermal conductivities of ordinary and deuterated gaseous hydrogen fluoride and their equimolar mixture
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Thermal conductivities of ordinary and deuterated gaseous hydrogen fluoride and their equimolar mixture
Two-phonon absorption in ultrasonic paramagnetic resonance of uranium-doped calcium fluoride, relating wave attenuation to ultrasonic intensity and magnetic field angular variation
Fluoride (F-) pollutants can harm plants and the animals feeding on them. However, it is largely unknown how complexing and chelating agents affect F bioavailability. Two studies were conducted that measured F- bioavailability and uptake by rice (Oryza sativa L.). In the first study, rice was grown in solution culture (pH 5.0) with 0, 2, or 4 mM F- as KF to compare the interaction of F- with humic acid (HA) and with a conventional chelating agent, N-hydroxyethylenthylenediaminetriacetic acid (HEDTA). In the second study, F was supplied at 0, 0.5, 1.0, and 2.0 mM KF with an additional 2 mM F- treatment containing solution Ca at 2x (2 mM Ca) the level used in the first study, to test the effect added Ca had on F- availability and uptake. Total biomass was greatest with HEDTA and F- < 1 mM. Leaf and stem F concentrations increased exponentially as solution F- increased linearly, with nearly no F partitioning into the seed. Results suggest that F was taken up as HF0 while F- uptake was likely restricted. Additionally, F- competed with HA for Ca, thus preventing the formation of Ca-HA flocculents. The addition of soluble Ca resulted in the precipitation of CaF2 solids on the root surface, as determined by tissue analysis and energy dispersive X-ray spectroscopy.
Mass spectrometer measurements of oxygen fluorides at cryogenic temperatures
Prior gamma irradiation effect on thermal volatilization of vinyl and vinylidene fluoride polymers
Film of beryllium fluoride protects beryllium against corrosion and stress corrosion cracking in water containing chloride ion concentrations. The film is formed by exposing the beryllium to fluorine gas at 535 degrees C or higher and makes beryllium suitable for space applications.
Fluid-bed fluoride volatility process recovers uranium from uranium fuels containing either zirconium or aluminum. The uranium is recovered as uranium hexafluoride. The process requires few operations in simple, compact equipment, and eliminates aqueous radioactive wastes.
Xenon fluorides permit the controlled addition of fluorine across an olefinic double bond. They provide a series of fluorinating agents that permit ready separation from the product at a high purity. The reactions may be carried out in the vapor phase.
Additions to fused-fluoride lubricant coatings for reduction of low temperature friction
Free radical addition of perfluoroacetonitrile to vinyl fluoride, noting formation of one isomeric compound
Magnesium oxide and lithium fluoride in far UV, NOTING refractive and absorption indices
Critical experiments analysis of uranyl fluoride solution reactors containing large-diameter voided tubes
Adsorbed surfactants influence on deformation and friction coefficient of lithium fluoride single crystals during sliding friction
Fuel and fission product transport through chemically vapor-deposited fluoride tungsten
Multiple phonon ultrasonic paramagnetic resonance generation and absorption for studying spin-lattice interactions between U ions and calcium fluoride
Nuclear fuel and fission product transport rates through chemically vapor deposited fluoride W cladding determined over high temperature range
High temperature modified Be fluoride, rhombic tridymite, protects Be against aqueous corrosion
Spin-lattice Hamiltonian for trivalent positive Nd and U ions in sites of tetragonal symmetry in calcium fluoride measured with electron spin resonance