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The Closed Tritium Cycle of the Tritium Laboratory Karlsruhe

Fusion Science and Technology, 2005
The Tritium Laboratory Karlsruhe (TLK) was commissioned with tritium in 1994 and since then has continuously improved its infrastructure and has expanded its experimental activities. With a fully closed tritium cycle and the license to handle 40 g of tritium TLK is an almost unique experimental facility.
Dörr, L.   +6 more
openaire   +1 more source

Tritium Sampling and Measurement

Health Physics, 1993
Current methods for sampling and measuring tritium are described. Although the basic techniques have not changed significantly over the last 10 y, there have been several notable improvements in tritium measurement instrumentation. The design and quality of commercial ion-chamber-based and gas-flow-proportional-counter-based tritium monitors for ...
M J, Wood   +3 more
openaire   +2 more sources

Thermalization of the muonic tritium atom in deuterium-tritium mixtures

Physical Review A, 1986
Thermalization of hot t\ensuremath{\mu} atoms formed in ${\mathrm{D}}_{2}$-DT-${\mathrm{T}}_{2}$ mixtures and relaxation of the triplet hyperfine state of t\ensuremath{\mu} are treated by Monte Carlo simulation. The cross sections for collisions with molecular targets are derived from cross sections for collisions with the component atoms.
openaire   +2 more sources

Tritium Monitoring and Analysis in the CRNL Tritium Laboratory

Fusion Technology, 1988
A laboratory handling tritium requires a large variety of procedures for the assay of tritium concentrations over a very wide range (10/sup -9/ Ci/m/sup 3/ to 10/sup 6/ Ci/m/sup 3/). The measurement of tritium can be conveniently categorized into four levels from very low concentrations to very high concentrations (up to 100% T/sub 2/).
C.M. Shultz   +3 more
openaire   +1 more source

Tritium profiles in snowpacks

Journal of Environmental Radioactivity, 2010
The release of tritiated water (HTO) to the atmosphere during the winter can contribute significantly to snow contamination and to water-soil-plant contamination after the spring thaw. The dose significance of such a release depends on the persistence of tritiated water in the snowpack, which is primarily controlled by the HTO diffusion process in snow
D, Galeriu, P, Davis, W, Workman
openaire   +2 more sources

Tritium from Russia

Science, 1996
Harold M. Agnew (Editorial, [13 Sept., p. 1475][1]) has proposed that the United States buy annually from Russia the supply of tritium expected to be needed for U.S. nuclear weapons in about 10 to 12 years and argues that this approach would be substantially cheaper than either the accelerator approach to producing tritium or its production in ...
openaire   +2 more sources

Tritium Measurement II—Tritium in Plasma

2016
In D–T burning plasma , the fueled ion density ratio nD/nT is a key parameter to control the fusion output power. The requirements in ITER are briefly described, namely the range of density ratio, spatial locations (core, edge, wall, and divertor), and spatial/time resolutions.
openaire   +1 more source

Tritium in Radioautography

Science, 1951
P J, FITZGERALD   +3 more
openaire   +2 more sources

Anthropogenic tritium: Inventory, discharge, environmental behavior and health effects

Renewable and Sustainable Energy Reviews, 2021
Baojie Nie, Sheng Fang, Muyi Ni
exaly  

Tritium in Nature

Science, 1951
A V, Grosse   +3 more
openaire   +2 more sources

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