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- W170535193 abstract ">The absorption isotherms of xenon on type G.S.-R4 highdensity graphite were measured at 750 and 1000 deg C by using radioactive tracer xenon. A technique was developed by which graphite at high temperature is equilibrated with radioactive xenon and the sample quenched in cold mercury to seal in the absorbed gas. The measured magnitudes of the absorption and the shapes of the isotherms indicate that by far the greatest fraction of the sorbed gas is contained within the accessible pores of the graphite. It was found that the absorption can be expressed by the equation A/sub g/= Pv/sub v/N/RT where A/sub g/ is the number of atoms absorbed per gram, v/sub v/ is the void volume per gram, N is Avogadro's number, R is the universal gas constant, T is the absolute temperature, and P is the partial pressure of the xenon. A comparison of the measured and theoretical densities, in conjunction with the measured absorptions, indicates that the xenon has completely filled the pores of the graphite. As a result of this work an explanation is offered for the high concentrations of fission xenon found on graphite surfaces. Measurements of the rate of diffusion of xenon into evacuated graphitemore » at 750 and 1000 deg C were made by equilibrating for time intervals shorter than those required to achieve equilibrium. Considerable variation in rates of absorption was found for the same type of graphite fabricated as round stock and flat stock. The experimental data are discussed in the light of the postulated transport mechanism. (auth)« less" @default.
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- W170535193 date "1960-09-01" @default.
- W170535193 modified "2023-09-26" @default.
- W170535193 title "ABSORPTION AND DIFFUSION OF XENON IN HIGH DENSITY GRAPHITE AT HIGH TEMPERATURES" @default.
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