We have measured solubility constants for hydrogen and deuterium in the Zr-Al alloy to be: K/sub H/ = exp (11.1(5) - 16900(600)/T9 (Torr/(Torr-1/g)/sup 2/) and K/sub D/ = exp (12.2(8) - 16800(600)/T) (Torr/Torr-1/g)/sup 2/) respectively, where K is defined implicitly by P = Kq/sup 2/ with P the equilibrium pressre (in Torr) and q the bulk concentration (in Torr-l/g). These values, in conjunction with a model for the solubility, predict that the constant for tritium, K/sub T/ approx. 4 K/sub H/. Consequently, the regeneration of tritium will be faster by a factor of four over that for hydrogen at the same temperature, or the tritium regeneration temperature can be reduced approx. 50/sup 0/K compared to hydrogen for the same regeneration time
Hydrogen absorbed by pure zirconium can be determined quantitatively with a precision of better than...
Hydrogen getter materials, most of which are metals and alloys forming hydrides, are attractive for ...
The kinetics of hydrogen absorption in Zr-based alloys Zr-2.5Nb, Zr-10Nb, Zr-2.5Nb-3Ta and Zr-10Nb-1...
As a step to understand the kinetics and mechanisms of hydrogen ab/desorption by/from hydrogen stora...
The reaction of He with the epsilon phase of the 50 wt. % U--Zr alloy is studied using a sensitive v...
Hydrogen absorption alloys are widely used for tritium handling, such as its storage, supply and rec...
Hydrogen sorption isotherms have been measured between 542 and 798 deg C at pressures of 0.001 to 70...
Hydrogen absorption properties of several U-Th-Zr and U-Th-Ti-Zr alloys were investigated for the pu...
Knowledge of the temperature dependence of hydrogen solubility is used to define the conditions nece...
The kinetics of hydrogen absorption in Zr-based alloys Zr–2.5Nb, Zr–10Nb, Zr–2.5Nb–3Ta and Zr–10Nb–1...
Because of the limited nature of elemental metals, most of the hydrogen storage materials are used a...
The kinetics of hydrogen absorption in Zr-based alloys Zr–2.5Nb, Zr–10Nb, Zr–2.5Nb–3Ta and Zr–10Nb–1...
Supply and recovery techniques of tritium gas (T2) on a laboratory scale is important for experiment...
Pd–Ag alloys with compositions close to 23–25% Ag are considered as a benchmark for hydrogen permeab...
Pd–Ag alloys with compositions close to 23–25% Ag are considered as a benchmark for hydrogen permeab...
Hydrogen absorbed by pure zirconium can be determined quantitatively with a precision of better than...
Hydrogen getter materials, most of which are metals and alloys forming hydrides, are attractive for ...
The kinetics of hydrogen absorption in Zr-based alloys Zr-2.5Nb, Zr-10Nb, Zr-2.5Nb-3Ta and Zr-10Nb-1...
As a step to understand the kinetics and mechanisms of hydrogen ab/desorption by/from hydrogen stora...
The reaction of He with the epsilon phase of the 50 wt. % U--Zr alloy is studied using a sensitive v...
Hydrogen absorption alloys are widely used for tritium handling, such as its storage, supply and rec...
Hydrogen sorption isotherms have been measured between 542 and 798 deg C at pressures of 0.001 to 70...
Hydrogen absorption properties of several U-Th-Zr and U-Th-Ti-Zr alloys were investigated for the pu...
Knowledge of the temperature dependence of hydrogen solubility is used to define the conditions nece...
The kinetics of hydrogen absorption in Zr-based alloys Zr–2.5Nb, Zr–10Nb, Zr–2.5Nb–3Ta and Zr–10Nb–1...
Because of the limited nature of elemental metals, most of the hydrogen storage materials are used a...
The kinetics of hydrogen absorption in Zr-based alloys Zr–2.5Nb, Zr–10Nb, Zr–2.5Nb–3Ta and Zr–10Nb–1...
Supply and recovery techniques of tritium gas (T2) on a laboratory scale is important for experiment...
Pd–Ag alloys with compositions close to 23–25% Ag are considered as a benchmark for hydrogen permeab...
Pd–Ag alloys with compositions close to 23–25% Ag are considered as a benchmark for hydrogen permeab...
Hydrogen absorbed by pure zirconium can be determined quantitatively with a precision of better than...
Hydrogen getter materials, most of which are metals and alloys forming hydrides, are attractive for ...
The kinetics of hydrogen absorption in Zr-based alloys Zr-2.5Nb, Zr-10Nb, Zr-2.5Nb-3Ta and Zr-10Nb-1...